357 results on '"P. Bobik"'
Search Results
102. Identification and expression of mammalian long-chain PUFA elongation enzymes
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Leonard, Amanda E., Kelder, Bruce, Bobik, Emil G., Chuang, Lu-Te, Lewis, Christopher J., Kopchick, John J., Mukerji, Pradip, and Huang, Yung-Sheng
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- 2002
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- View/download PDF
103. Interferon regulatory factor 4 a master regulator of hypertensive kidney fibrosis and inflammation?
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Kyaw, Tin, Drummond, Grant, and Bobik, Alex
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- 2023
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104. Plasmin-Independent Gelatinase B (Matrix Metalloproteinase-9) Release by Monocytes under the Influence of Urokinase
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Menshikov, M. Yu., Elizarova, E. P., Kudryashova, E., Timofeyeva, A. V., Khaspekov, Yu., Beabealashvilly, R. Sh., and Bobik, A.
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- 2001
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105. Characterization of oil exhibiting high γ-linolenic acid from a genetically transformed canola strain
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Liu, Jim-Wen, DeMichele, Stephen, Bergana, Marti, Bobik, Jr., Emil, Hastilow, Christine, Chuang, Lu-Te, Mukerji, Pradip, and Huang, Yung-Sheng
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- 2001
- Full Text
- View/download PDF
106. Connections between neutron monitor count rate and solar modulation strength
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Usoskin, I. G., Gladysheva, O. G., Bobik, P., Kudela, K., and Kananen, H.
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- 1999
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107. Effects of ψ-linolenic acid and docosahexaenoic acid in formulae on brain fatty acid composition in artificially reared rats
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Ward, G. R., Huang, Y. -S., Xing, H. -C., Bobik, E., Wauben, I., Auestad, N., Montalto, M., and Wainwright, P. E.
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- 1999
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108. Cloning of Δ12- and Δ6-desaturases from Mortierella alpina and recombinant production of γ-linolenic acid in Saccharomyces cerevisiae
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Huang, Yung-Sheng, Chaudhary, Sunita, Thurmond, Jennifer M., Bobik, Jr., Emil G., Yuan, Ling, Chan, George M., Kirchner, Stephen J., Mukerji, Pradip, and Knutzon, Deborah S.
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- 1999
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109. In Vitro hydrolysis of fungal oils: Distribution of arachidonic acid-containing triacylglycerol molecular species
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Liu, Jim-Wen, Bobik, Jr., Emi G., and Huang, Yung-Sheng
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- 1998
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110. Emperipolesis of marrow cells within megakaryocytes in the bone marrow of sublethally irradiated mice
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Bobik, R. and Dabrowski, Z.
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- 1995
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111. Quantitative determination of monoglycerides and diglycerides by high-performance liquid chromatography and evaporative light-scattering detection
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Liu, J., Lee, T., Bobik, Jr., E., Guzman-Harty, M., and Hastilow, C.
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- 1993
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112. Caspase-Dependent Cytotoxicity of Anti-DNA Autoantibodies
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Sashchenko, L. P., Khaidukov, S. V., Kozyr, A. V., Luk'yanova, T. I., Gabibov, A. G., Suchkov, S. V., Bobik, T. V., Alekberova, Z. S., and Gnuchev, N. V.
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- 2001
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113. Effects of Transforming Growth Factor-β1 on Proliferation of Smooth Muscle Cells in Human Aortic Intima and Human Promonocytic Leukemia THP-1 Cells
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Kalinina, N. I., Ilyinskaya, O. P., Bobik, A., and Tararak, E. M.
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- 2001
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114. The role of urokinase in cell migration induced by growth factors
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Stepanova, V. V., Bobik, A., Domogatskii, S. P., Mukhina, S. A., and Tkachuk, V. A.
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- 1999
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115. Performances of JEM-EUSO
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Santangelo A., Cano G. Saez, Mernik T., Higashide K., Tanco G. Medina, Guzman A., Garino F., Fenu F., Bobik P., Bertaina M., and Shinozaki K
- Subjects
Physics ,QC1-999 - Abstract
In this paper we describe the requirements and the expected performances of JEM-EUSO. Designed as the first mission to explore the Ultra High Energy Universe from space, JEM-EUSO will monitor the earth's atmosphere at night to record the UV (300–400 nm) tracks generated by the Extensive Air Showers produced by Ultra High Energy primaries propagating in the atmosphere. After briefing summarizing the main aspects of the JEM-EUSO Instrument and mission baseline, we will present, in details, our studies of the expected trigger rate, the estimated exposure, as well as on the expected angular, energy, and Xmax resolution. Eventually, the obtained results will be discussed in the context of the scientific requirements of the mission.
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- 2013
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116. First observations of speed of light tracks by a fluorescence detector looking down on the atmosphere
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G. Abdellaoui, S. Abe, J.H. Adams Jr., A. Ahriche, D. Allard, L. Allen, G. Alonso, L. Anchordoqui, A. Anzalone, Y. Arai, K. Asano, R. Attallah, H. Attoui, M. Ave Pernas, S. Bacholle, M. Bakiri, P. Baragatti, P. Barrillon, S. Bartocci, J. Bayer, B. Beldjilali, T. Belenguer, N. Belkhalfa, R. Bellotti, A. Belov, K. Belov, K. Benmessai, M. Bertaina, P.L. Biermann, S. Biktemerova, F. Bisconti, N. Blanc, J. Błȩcki, S. Blin-Bondil, P. Bobik, M. Bogomilov, E. Bozzo, A. Bruno, K.S. Caballero, F. Cafagna, D. Campana, J-N. Capdevielle, F. Capel, A. Caramete, L. Caramete, P. Carlson, R. Caruso, M. Casolino, C. Cassardo, A. Castellina, C. Catalano, O. Catalano, A. Cellino, M. Chikawa, G. Chiritoi, M.J. Christl, V. Connaughton, L. Conti, G. Cordero, G. Cotto, H.J. Crawford, R. Cremonini, S. Csorna, A. Cummings, S. Dagoret-Campagne, C. De Donato, C. de la Taille, C. De Santis, L. del Peral, M. Di Martino, A. Diaz Damian, T. Djemil, I. Dutan, A. Ebersoldt, T. Ebisuzaki, R. Engel, J. Eser, F. Fenu, S. Fernández-González, J. Fernández-Soriano, S. Ferrarese, M. Flamini, C. Fornaro, M. Fouka, A. Franceschi, S. Franchini, C. Fuglesang, T. Fujii, J. Fujimoto, M. Fukushima, P. Galeotti, E. García-Ortega, G. Garipov, E. Gascón, J. Genci, G. Giraudo, C. González Alvarado, P. Gorodetzky, R. Greg, F. Guarino, A. Guzmán, Y. Hachisu, M. Haiduc, B. Harlov, A. Haungs, J. Hernández Carretero, W. Hidber Cruz, D. Ikeda, N. Inoue, S. Inoue, F. Isgrò, Y. Itow, T. Jammer, S. Jeong, E. Joven, E.G. Judd, A. Jung, J. Jochum, F. Kajino, T. Kajino, S. Kalli, I. Kaneko, Y. Karadzhov, J. Karczmarczyk, K. Katahira, K. Kawai, Y. Kawasaki, A. Kedadra, H. Khales, B.A. Khrenov, Jeong-Sook Kim, Soon-Wook Kim, M. Kleifges, P.A. Klimov, D. Kolev, H. Krantz, I. Kreykenbohm, K. Kudela, Y. Kurihara, A. Kusenko, E. Kuznetsov, A. La Barbera, C. Lachaud, H. Lahmar, F. Lakhdari, R. Larson, O. Larsson, J. Lee, J. Licandro, L. López Campano, M.C. Maccarone, S. Mackovjak, M. Mahdi, D. Maravilla, L. Marcelli, J.L. Marcos, A. Marini, W. Marszał, K. Martens, Y. Martín, O. Martinez, M. Martucci, G. Masciantonio, K. Mase, M. Mastafa, R. Matev, J.N. Matthews, N. Mebarki, G. Medina-Tanco, M.A. Mendoza, A. Menshikov, A. Merino, J. Meseguer, S.S. Meyer, J. Mimouni, H. Miyamoto, Y. Mizumoto, A. Monaco, J.A. Morales de los Ríos, C. Moretto, S. Nagataki, S. Naitamor, T. Napolitano, W. Naslund, R. Nava, A. Neronov, K. Nomoto, T. Nonaka, T. Ogawa, S. Ogio, H. Ohmori, A.V. Olinto, P. Orleański, G. Osteria, A. Pagliaro, W. Painter, M.I. Panasyuk, B. Panico, G. Pasqualino, E. Parizot, I.H. Park, B. Pastircak, T. Patzak, T. Paul, I. Pérez-Grande, F. Perfetto, T. Peter, P. Picozza, S. Pindado, L.W. Piotrowski, S. Piraino, L. Placidi, Z. Plebaniak, S. Pliego, A. Pollini, Z. Polonski, E.M. Popescu, P. Prat, G. Prévôt, H. Prieto, G. Puehlhofer, M. Putis, J. Rabanal, A.A. Radu, M. Reyes, M. Rezazadeh, M. Ricci, M.D. Rodríguez Frías, M. Rodencal, F. Ronga, G. Roudil, I. Rusinov, M. Rybczyński, M.D. Sabau, G. Sáez Cano, H. Sagawa, Z. Sahnoune, A. Saito, N. Sakaki, H. Salazar, J.C. Sanchez Balanzar, J.L. Sánchez, A. Santangelo, A. Sanz-Andrés, M. Sanz Palomino, O. Saprykin, F. Sarazin, M. Sato, T. Schanz, H. Schieler, V. Scotti, S. Selmane, D. Semikoz, M. Serra, S. Sharakin, H.M. Shimizu, K. Shinozaki, T. Shirahama, B. Spataro, I. Stan, T. Sugiyama, D. Supanitsky, M. Suzuki, B. Szabelska, J. Szabelski, N. Tajima, T. Tajima, Y. Takahashi, H. Takami, M. Takeda, Y. Takizawa, M.C. Talai, C. Tenzer, S.B. Thomas, O. Tibolla, L. Tkachev, H. Tokuno, T. Tomida, N. Tone, S. Toscano, M. Traïche, R. Tsenov, Y. Tsunesada, K. Tsuno, J. Tubbs, S. Turriziani, Y. Uchihori, O. Vaduvescu, J.F. Valdés-Galicia, P. Vallania, G. Vankova, C. Vigorito, L. Villaseñor, B. Vlcek, P. von Ballmoos, M. Vrabel, S. Wada, J. Watanabe, J. Watts Jr., M. Weber, R. Weigand Muñoz, A. Weindl, L. Wiencke, M. Wille, J. Wilms, Z. Włodarczyk, T. Yamamoto, J. Yang, H. Yano, I.V. Yashin, D. Yonetoku, S. Yoshida, R. Young, I.S Zgura, M.Yu. Zotov, A. Zuccaro Marchi, AstroParticule et Cosmologie (APC (UMR_7164)), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Observatoire de Paris, Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-Centre National de la Recherche Scientifique (CNRS)-Université de Paris (UP), Laboratoire de l'Accélérateur Linéaire (LAL), Université Paris-Sud - Paris 11 (UP11)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS), Organisation de Micro-Électronique Générale Avancée (OMEGA), École polytechnique (X)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3), Institut de recherche en astrophysique et planétologie (IRAP), Centre National de la Recherche Scientifique (CNRS)-Observatoire Midi-Pyrénées (OMP), Météo France-Centre National d'Études Spatiales [Toulouse] (CNES)-Université Fédérale Toulouse Midi-Pyrénées-Centre National de la Recherche Scientifique (CNRS)-Institut de Recherche pour le Développement (IRD)-Météo France-Centre National d'Études Spatiales [Toulouse] (CNES)-Université Fédérale Toulouse Midi-Pyrénées-Centre National de la Recherche Scientifique (CNRS)-Institut de Recherche pour le Développement (IRD)-Université Toulouse III - Paul Sabatier (UT3), Université Fédérale Toulouse Midi-Pyrénées-Institut national des sciences de l'Univers (INSU - CNRS), JEM-EUSO, Centre National de la Recherche Scientifique (CNRS)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Paris-Sud - Paris 11 (UP11), Institut national des sciences de l'Univers (INSU - CNRS)-Université Toulouse III - Paul Sabatier (UT3), Université Fédérale Toulouse Midi-Pyrénées-Université Fédérale Toulouse Midi-Pyrénées-Observatoire Midi-Pyrénées (OMP), Météo France-Centre National d'Études Spatiales [Toulouse] (CNES)-Université Fédérale Toulouse Midi-Pyrénées-Centre National de la Recherche Scientifique (CNRS)-Institut de Recherche pour le Développement (IRD)-Météo France-Centre National d'Études Spatiales [Toulouse] (CNES)-Centre National de la Recherche Scientifique (CNRS)-Institut de Recherche pour le Développement (IRD)-Centre National de la Recherche Scientifique (CNRS), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Observatoire de Paris, PSL Research University (PSL)-PSL Research University (PSL)-Université Paris Diderot - Paris 7 (UPD7), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-École polytechnique (X), Université Toulouse III - Paul Sabatier (UT3), Université Fédérale Toulouse Midi-Pyrénées-Centre National de la Recherche Scientifique (CNRS), Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-Centre National de la Recherche Scientifique (CNRS)-Université Paris Cité (UPCité), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-École polytechnique (X)-Centre National de la Recherche Scientifique (CNRS), Université de Toulouse (UT)-Université de Toulouse (UT)-Institut national des sciences de l'Univers (INSU - CNRS)-Observatoire Midi-Pyrénées (OMP), Institut de Recherche pour le Développement (IRD)-Université Toulouse III - Paul Sabatier (UT3), Université de Toulouse (UT)-Université de Toulouse (UT)-Institut national des sciences de l'Univers (INSU - CNRS)-Centre National d'Études Spatiales [Toulouse] (CNES)-Centre National de la Recherche Scientifique (CNRS)-Météo-France -Institut de Recherche pour le Développement (IRD)-Institut national des sciences de l'Univers (INSU - CNRS)-Centre National d'Études Spatiales [Toulouse] (CNES)-Centre National de la Recherche Scientifique (CNRS)-Météo-France -Centre National de la Recherche Scientifique (CNRS), Observatoire de Paris, PSL Research University (PSL)-PSL Research University (PSL)-Université Paris Diderot - Paris 7 (UPD7)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS), Abdellaoui, G., Abe, S., Adams, J., Ahriche, A., Allard, D., Allen, L., Alonso, G., Anchordoqui, L., Anzalone, A., Arai, Y., Asano, K., Attallah, R., Attoui, H., Ave Pernas, M., Bacholle, S., Bakiri, M., Baragatti, P., Barrillon, P., Bartocci, S., Bayer, J., Beldjilali, B., Belenguer, T., Belkhalfa, N., Bellotti, R., Belov, A., Belov, K., Belz, J. W., Benmessai, K., Bertaina, M., Biermann, P. L., Biktemerova, S., Bisconti, F., Blanc, N., Blecki, J., Blin-Bondil, S., Bobik, P., Bogomilov, M., Bozzo, E., Bruno, A., Caballero, K. S., Cafagna, F., Campana, D., Capdevielle, J-N., Capel, F., Caramete, A., Caramete, L., Carlson, P., Caruso, R., Casolino, M., Cassardo, C., Castellina, A., Catalano, O., Cellino, A., Chikawa, M., Chiritoi, G., Christl, M. J., Connaughton, V., Conti, L., Cordero, G., Cotto, G., Crawford, H. J., Cremonini, R., Csorna, S., Cummings, A., Dagoret-Campagne, S., De Donato, C., de la Taille, C., De Santis, C., del Peral, L., Di Martino, M., Djemil, T., Dutan, I., Ebersoldt, A., Ebisuzaki, T., Engel, R., Eser, J., Fenu, F., Fernández-González, S., Fernández-Soriano, J., Ferrarese, S., Flamini, M., Fornaro, C., Fouka, M., Franceschi, A., Franchini, S., Fuglesang, C., Fujii, T., Fujimoto, J., Fukushima, M., Galeotti, P., García-Ortega, E., Garipov, G., Gascón, E., Genci, J., Giraudo, G., González Alvarado, C., Gorodetzky, P., Greg, R., Guarino, F., Guzmán, A., Hachisu, Y., Haiduc, M., Harlov, B., Haungs, A., Hernández Carretero, J., Hidber Cruz, W., Ikeda, D., Inoue, N., Inoue, S., Isgrò, F., Itow, Y., Jammer, T., Jeong, S., Joven, E., Judd, E., Jung, A., Jochum, J., Kajino, F., Kajino, T., Kalli, S., Kaneko, I., Karadzhov, Y., Karczmarczyk, J., Katahira, K., Kawai, K., Kawasaki, Y., Kedadra, A., Khales, H., Khrenov, B. A., Kim, Jeong-Sook, Kim, Soon-Wook, Kleifges, M., Klimov, P. A., Kolev, D., Krantz, H., Kreykenbohm, I., Kudela, K., Kurihara, Y., Kusenko, A., Kuznetsov, E., La Barbera, A., Lachaud, C., Lahmar, H., Lakhdari, F., Larsson, O., Lee, J., Licandro, J., López Campano, L., Maccarone, M. C., Mackovjak, S., Mahdi, M., Maravilla, D., Marcelli, L., Marcos, J., Marini, A., Marszal, W., Martens, K., Martín, Y., Martinez, O., Martucci, M., Masciantonio, G., Mase, K., Mustafa, M., Matev, R., Matthews, J., Mebarki, N., Medina-Tanco, G., Mendoza, M. A., Menshikov, A., Merino, A., Meseguer, J., Meyer, S. S., Mimouni, J., Miyamoto, H., Mizumoto, Y., Monaco, A., Morales de los Ríos, J. A., Nagataki, S., Naitamor, S., Napolitano, T., Nava, R., Neronov, A., Nomoto, K., Nonaka, T., Ogawa, T., Ogio, S., Ohmori, H., Olinto, A. V., Orleański, P., Osteria, G., Pagliaro, A., Painter, W., Panasyuk, M. I., Panico, B., Parizot, E., Park, I. H., Pastircak, B., Patzak, T., Paul, T., Pérez-Grande, I., Perfetto, F., Peter, T., Picozza, P., Pindado, S., Piotrowski, L. W., Piraino, S., Placidi, L., Plebaniak, Z., Pliego, S., Pollini, A., Polonski, Z., Popescu, E. M., Prat, P., Prévôt, G., Prieto, H., Puehlhofer, G., Putis, M., Rabanal, J., Radu, A. A., Reyes, M., Rezazadeh, M., Ricci, M., Rodríguez Frías, M. D., Ronga, F., Roudil, G., Rusinov, I., Rybczyński, M., Sabau, M., Sáez Cano, G., Sagawa, H., Sahnoune, Z., Saito, A., Sakaki, N., Salazar, H., Sanchez Balanzar, J. C., Sánchez, J. L., Santangelo, A., Sanz-Andrés, A., Sanz Palomino, M., Saprykin, O., Sarazin, F., Sato, M., Schanz, T., Schieler, H., Scotti, V., Selmane, S., Semikoz, D., Serra, M., Sharakin, S., Shimizu, H. M., Shin, H. S., Shinozaki, K., Shirahama, T., Sokolsky, P., Spataro, B., Stan, I., Sugiyama, T., Supanitsky, D., Suzuki, M., Szabelska, B., Szabelski, J., Tajima, N., Tajima, T., Takahashi, Y., Takami, H., Takeda, M., Takizawa, Y., Talai, M. C., Tameda, Y., Tenzer, C., Thomas, S. B., Thomson, G. B., Tibolla, O., Tkachev, L., Tokuno, H., Tomida, T., Tone, N., Toscano, S., Traïche, M., Tsenov, R., Tsunesada, Y., Tsuno, K., Tubbs, J., Turriziani, S., Uchihori, Y., Vaduvescu, O., Valdés-Galicia, J. F., Vallania, P., Vankova, G., Vigorito, C., Villaseñor, L., Vlcek, B., von Ballmoos, P., Vrabel, M., Wada, S., Watanabe, J., Watts, J., Weber, M., Weigand Muñoz, R., Weindl, A., Wiencke, L., Wille, M., Wilms, J., Włodarczyk, Z., Yamamoto, T., Yang, J., Yano, H., Yashin, I. V., Yonetoku, D., Yoshida, S., Young, R., Zgura, I. S., Zotov, M. Yu., and Zuccaro Marchi, A.
- Subjects
visible and IR photons ,Balloon instrumentation ,Detectors for UV, visible and IR photons ,Lasers ,Space instrumentation ,Instrumentation ,Mathematical Physics ,Laser ,chemistry.chemical_element ,FOS: Physical sciences ,01 natural sciences ,Fluorescence spectroscopy ,law.invention ,Aeronáutica ,Atmosphere ,Xenon ,Optics ,law ,0103 physical sciences ,Calibration ,[PHYS.PHYS.PHYS-INS-DET]Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det] ,010303 astronomy & astrophysics ,Instrumentation and Methods for Astrophysics (astro-ph.IM) ,Detectors for UV ,Physics ,Instrumentation et méthodes en physique ,010308 nuclear & particles physics ,business.industry ,Detector ,Autres mathématiques ,Speed of light (cellular automaton) ,3. Good health ,Pathfinder ,chemistry ,business ,Astrophysics - Instrumentation and Methods for Astrophysics ,Detectors for UV, visible and IR photon - Abstract
EUSO-Balloon is a pathfinder mission for the Extreme Universe Space Observatory onboard the Japanese Experiment Module (JEM-EUSO). It was launched on the moonless night of the 25th of August 2014 from Timmins, Canada. The flight ended successfully after maintaining the target altitude of 38 km for five hours. One part of the mission was a 2.5 hour underflight using a helicopter equipped with three UV light sources (LED, xenon flasher and laser) to perform an inflight calibration and examine the detectors capability to measure tracks moving at the speed of light. We describe the helicopter laser system and details of the underflight as well as how the laser tracks were recorded and found in the data. These are the first recorded laser tracks measured from a fluorescence detector looking down on the atmosphere. Finally, we present a first reconstruction of the direction of the laser tracks relative to the detector., 0, SCOPUS: ar.j, info:eu-repo/semantics/published
- Published
- 2018
117. Assessment of different markers of ovarian reserve in women with papillary thyroid cancer treated with radioactive iodine
- Author
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Adamska, Agnieszka, Tomczuk-Bobik, Paulina, Popławska-Kita, Anna Beata, Siewko, Katarzyna, Buczyńska, Angelika, Szumowski, Piotr, Żukowski, Łukasz, Myśliwiec, Janusz, Zbucka-Krętowska, Monika, Adamski, Marcin, and Krętowski, Adam Jacek
- Abstract
Treatment with radioactive iodine (RAI) in women with differentiated thyroid cancer is associated with decreased serum concentrations of anti-Müllerian hormone (AMH); however, other markers have not been investigated. Therefore, this study aimed to evaluate the effect of RAI treatment on antral follicle count (AFC) and the serum concentration of inhibin B, follicle-stimulating hormone (FSH), and AMH in women with papillary thyroid cancer (PTC) treated with RAI. We examined 25 women at a median age of 33 years treated with a single dose of RAI. We divided the participants into women over (n= 11) and under 35 years of age (n= 14). Serum concentrations of inhibin B, FSH, AMH, and AFC were assessed at baseline and 1 year after RAI treatment. We found decreased AFC (P= 0.03), serum levels of AMH (P< 0.01), inhibin B (P= 0.03), but not FSH (P= 0.23), 1 year after RAI treatment in comparison to baseline in the whole group. When we compared serum levels of AMH in younger vs older women separately, we observed a significant reduction of this hormone’s serum level after RAI treatment in both groups (P< 0.01; P= 0.04, respectively). We concluded that RAI treatment significantly impacts the functional ovarian reserve in premenopausal women with PTC.
- Published
- 2021
- Full Text
- View/download PDF
118. Erratum to: Ultra high energy photons and neutrinos with JEM-EUSO
- Author
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S. Perez Cano, M. Bogomilov, M. Rybczyński, P. Gorodetzky, G. Cordero, K. Kawai, O. Martinez, Akinori Saito, Francesco Fenu, Y. Itow, Lech Wiktor Piotrowski, R. Matev, Toshikazu Ebisuzaki, J. N. Capdevielle, L. Santiago Crúz, Hiroyuki Sagawa, D. Ikeda, Ovidiu Vaduvescu, M. Lacombe, Claudio Cassardo, S. Yoshida, F. Guarino, Silvia Ferrarese, V. Scotti, T. Nonaka, A. Haungs, H. Schieler, I. Kreykenbohm, Y. Hachisu, T. Batsch, Y. Arai, E. Kuznetsov, T. J. Weiler, M. S. Briggs, Y. Tsunesada, R. Bechini, P. Picozza, Tomás Belenguer, M. Bonamente, M. Roth, N. Inoue, H. Salazar, M. Ave Pernas, L. Wiencke, C. de la Taille, K. Katahira, I. Fernández-Gómez, F. Cafagna, J. Licandro, K. Higashide, S. Ahmad, M. Unger, Maxim Gonchar, T. Tomida, M. I. Panasyuk, Ke Fang, M. Sakata, M. Reyes, L. Marcelli, J. Yang, D. Cline, H. Takami, R. Young, V. Connaughton, H. J. Crawford, L. del Peral, A. Franceschi, E. Parizot, A. Kusenko, P. Reardon, Hajime Yano, M. Di Martino, J. Hernández Carretero, A. Marini, M. Kleifges, D. Supanitsky, G. Siemieniec-Oziȩbło, M. Dupieux, Sergei A. Sharakin, Roberto Bellotti, G. Castellinic, J. Błȩcki, T. Paul, F. Dulucq, J. A. Morales de los Ríos, M. Chikawa, P. Vallania, Y. Karadzhov, S. Sánchez, G. Distratis, D. Allard, T. Tymieniecka, J. Sledd, M. Nagata, C. González Alvarado, M. Flamini, P. von Ballmoos, M. E. Bertaina, H. Lim, Dmitry V. Naumov, M. C. Maccarone, S. Selmane, G. Sáez-Cano, H. Ohmori, S. W. Kim, G. Medina-Tanco, G. Modestino, Y. Takizawa, C. Blaksley, H. Sato, A. Guzman, Susumu Inoue, T. Shibata, N. Tone, J. Watts, M. Suzuki, C. Pennypacker, T. Murakami, E. Joven, B. Pastircak, J. F. Valdés-Galicia, L. Tkachev, S. Csorna, J. Watanabe, M. Wille, R. Cremonini, J. Szabelski, Y. Mizumoto, P. Prat, J. Karczmarczyk, M. D. Sabau, M. Sanz Palomino, Y. Miyazaki, M. Putis, A. Sobey, Satoshi Wada, M. Takeda, T. Ogawa, H. H. Silva Lopez, M. Yu. Zotov, E. G. Judd, S. Piraino, A. Jung, G. Vankova, A. Cellino, K. Shinozaki, R. Nava, J. H. Adams, N. Sakaki, Gali Garipov, T. Napolitano, T. Mernik, Susana Briz, M. Karus, Angela V. Olinto, Fernando López, Andrea Santangelo, K. Yoshida, K. Mase, O. Tibolla, Rossella Caruso, L. Anchordoqui, P. Barrillon, S. Nagataki, J. Blümer, T. Shirahama, Domenico Finco, T. Patzak, D. Campana, J. Lee, K. Nomoto, C. Lachaud, S. Dagoret-Campagne, F. Tajima, C. Moretto, H. Prieto, P. L. Biermann, A. Anzalone, C. De Donato, T. Yamamoto, R. Engel, P. Baragatti, J. N. Albert, I. Rusinov, K. Belov, Thomas Schanz, J. S. Kim, V. S. Morozenko, Livio Conti, C. De Santis, A. Zuccaro Marchi, A. A. Berlind, M. Nagano Murakami, Mitsuteru Sato, F. Sarazin, Jörn Wilms, O. A. Saprykin, T. Tajima, H. M. Shimizu, J. Bayer, J. Geary, A. Pollini, Pavel Klimov, N. De Simone, T. Peter, N. Tajima, Y. Yamamoto, A. Dell’Oro, H. Tokuno, T. Sugiyama, G. Roudil, B. Harlov, Carlo Vigorito, K. Kudela, M. Weber, D. Monnier-Ragaigne, A. Segreto, H. Rothkaehl, C. Catalano, N. Blanc, C. Tenzer, D. Semikoz, I. H. Park, J. Fujimoto, G. Giraudo, T. Kajino, F. Ronga, G. Osteria, P. Bobik, S. Biktemerova, Francesco Isgrò, G. Prévôt, K. Tsuno, T. Pierog, S. Blin-Bondil, V. Andreev, D. Yonetoku, T. Wibig, K. Asano, B. A. Khrenov, H. Miyamoto, K. Słomińska, M. Ricci, A. Neronov, Z. Włodarczyk, P. Galeotti, D. Kolev, G. Gelmini, Simona Toscano, I. V. Yashin, S. Watanabe, R. Tsenov, I. Rodríguez, P. Orleański, G. Masciantonio, A. J. de Castro, M. Fukushima, Z. Plebaniak, A. Insolia, F. Kajino, L. Valore, B. Keilhauer, H. W. Park, A. Bruno, Y. Uchihori, K. Mannheim, Frederic Trillaud, B. Mot, Yukihiro Takahashi, Alfonso Monaco, Marco Casolino, Claudio Fornaro, G. Catalano, Y. Kawasaki, S. Falk, S. Ogio, H. Ikeda, A. Ebersoldt, L. Villaseñor, Y. Kurihara, D. Maravilla, T. Nakamura, M. Serra, I. Kaneko, B. Szabelska, M. J. Christl, and M. D. Rodríguez Frías
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Physics ,High energy photon ,Space and Planetary Science ,Astrophysics::High Energy Astrophysical Phenomena ,Physics::Space Physics ,Astrophysics::Instrumentation and Methods for Astrophysics ,Astronomy ,High Energy Physics::Experiment ,Astronomy and Astrophysics ,Neutrino ,Neutrinos Photons Space observation - Abstract
Ultra high energy photons and neutrinos are carriers of very important astrophysical information. They may be produced at the sites of cosmic ray acceleration or during the propagation of the cosmic rays in the intergalactic medium. In contrast to charged cosmic rays, photon and neutrino arrival directions point to the production site because they are not deflected by the magnetic fields of the Galaxy or the intergalactic medium. In this work we study the characteristics of the longitudinal development of showers initiated by photons and neutrinos at the highest energies. These studies are relevant for development of techniques for neutrino and photon identification by the JEM-EUSO telescope. In particular, we study the possibility of observing the multi-peak structure of very deep horizontal neutrino showers with JEM-EUSO. We also discuss the possibility to determine the flavor content of the incident neutrino flux by taking advantage of the different characteristics of the longitudinal profiles generated by different type of neutrinos. This is of grate importance for the study of the fundamental properties of neutrinos at the highest energies. Regarding photons, we discuss the detectability of the cosmogenic component by JEM-EUSO and also estimate the expected upper limits on the photon fraction which can be obtained from the future JEM-EUSO data for the case in which there are no photons in the samples.
- Published
- 2015
119. Erratum to: Performances of JEM-EUSO: angular reconstruction
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H. Sato, A. Guzman, David B. Cline, E. G. Judd, Katsuhiko Tsuno, I. Rodríguez, Roberto Bellotti, James H. Adams, I. Kreykenbohm, M. Ave Pernas, Vladimir Andreev, K. Mase, R. Young, M. Sakata, N. Tone, S. Ahmad, Massimiliano Bonamente, Ovidiu Vaduvescu, Yoshihiko Mizumoto, Katsuaki Asano, Toshikazu Ebisuzaki, T. Shirahama, C. González Alvarado, Francesco Fenu, M. Lacombe, N. Inoue, L. del Peral, A. Franceschi, E. Parizot, F. Tajima, E. Kuznetsov, Andreas A. Berlind, Daisuke Yonetoku, Claudio Cassardo, Graciela B. Gelmini, J. N. Capdevielle, L. Santiago Crúz, M. Wille, M. Nagano Murakami, Y. Uchihori, Alexander Kusenko, J. Hernández Carretero, B. Mot, M. Di Martino, A. Marini, Y. Hachisu, G. Osteria, Satoshi Wada, T. Ogawa, Silvia Ferrarese, Francesco Isgrò, F. Dulucq, T. Tymieniecka, J. Błȩcki, H. Prieto, H. Lim, M. C. Maccarone, M. Sanz Palomino, Y. Arai, N. Tajima, T. Murakami, J. Sledd, Shigehiro Nagataki, D. Kolev, H. Ikeda, R. Cremonini, B. Keilhauer, G. Prévôt, J. A. Morales de los Ríos, J. Karczmarczyk, Yukihiro Takahashi, J. Watts, M. Unger, M. Yu. Zotov, Susana Briz, J. N. Albert, Ke Fang, Thomas Schanz, K. Słomińska, C. Pennypacker, B. Pastircak, Barbara Szabelska, T. Peter, Susumu Inoue, Piotr Orleanski, Frederic Jean Ronga, D. Ikeda, Livio Conti, Y. Yamamoto, A. Zuccaro Marchi, Valerie Connaughton, H. H. Silva Lopez, G. Distratis, Angela V. Olinto, Fernando López, Andrea Santangelo, Jörn Wilms, O. A. Saprykin, M. Nagata, Marco Casolino, Claudio Fornaro, Hanna Rothkaehl, I. Fernández-Gómez, M. Karus, Pierre Barrillon, M. Bogomilov, C. De Donato, F. Sarazin, Marc Weber, Alberto Cellino, Soon-Wook Kim, Gali Garipov, Domenico Finco, Dmitry V. Naumov, Andrii Neronov, G. Roudil, J. S. Kim, P. L. Biermann, F. Cafagna, G. Modestino, E. Joven, M. I. Panasyuk, L. R. Wiencke, V. S. Morozenko, A. Jung, M. Putis, F. Kajino, A. Sobey, Hiroyuki Sagawa, B. Harlov, Carlo Vigorito, C. Lachaud, S. Dagoret-Campagne, Yoshitaka Itow, I. Rusinov, T. Mernik, M. Flamini, G. Giraudo, K. Higashide, A. Insolia, M. Kleifges, P. Picozza, J. Lee, K. Kudela, T. Paul, K. Yoshida, M. Dupieux, Thomas J. Weiler, D. Maravilla, H. W. Park, S. Perez Cano, Y. Takizawa, C. Blaksley, T. Shibata, J. F. Valdés-Galicia, L. G. Tkachev, Y. Karadzhov, K. Shinozaki, Marcos Reyes, S. Csorna, G. Vankova, R. Nava, N. Sakaki, Maxim Gonchar, Hirohiko M. Shimizu, Z. Włodarczyk, G. Medina-Tanco, A. Dell’Oro, Toshitaka Kajino, L. Valore, S. Biktemerova, M. Rybczyński, Rossella Caruso, K. Kawai, S. Sánchez, G. Castellinic, Alfonso Monaco, Toshiyuki Nonaka, C. Moretto, P. Galeotti, Akinori Saito, Markus Roth, R. Bechini, Simona Toscano, C. Tenzer, T. Sugiyama, P. Gorodetzky, G. Cordero, J. Geary, Tadeusz Wibig, Ralph Engel, N. De Simone, Fausto Guarino, P. von Ballmoos, M. Ricci, Jianyi Yang, Taka Tomida, Shigeto Watanabe, Javier Licandro, P. Prat, A. Haungs, Yoshimasa Kurihara, Hajime Yano, S. Selmane, Lech Wiktor Piotrowski, H. Schieler, S. Piraino, Tokonatsu Yamamoto, P. Baragatti, Mitsuteru Sato, I. V. Yashin, S. Yoshida, J. Szabelski, Humberto Ibarguen Salazar, Frederic Trillaud, G. Catalano, R. Matev, T. Pierog, J. Watanabe, L. Marcelli, M. Takeda, C. De Santis, H. Tokuno, M. Suzuki, D. Campana, A. Anzalone, T. Napolitano, D. Monnier-Ragaigne, A. Segreto, Inkyu Park, T. Patzak, Y. Miyazaki, M. D. Rodríguez Frías, Mark Christl, O. Martinez, O. Tibolla, Tomás Belenguer, Patrick J. Reardon, A. Bruno, Z. Plebaniak, J. Blümer, R. Tsenov, K. Belov, C. Catalano, N. Blanc, Toshiki Tajima, G. Siemieniec-Oziȩbło, S. Falk, A. Pollini, G. Masciantonio, Hitoshi Ohmori, Pavel Klimov, Karl Mannheim, Michael S. Briggs, A. J. de Castro, Michiyuki Chikawa, Yoshiya Kawasaki, H. J. Crawford, D. Semikoz, L. Villaseñor, D. Allard, G. Sáez-Cano, M. Serra, Luis A. Anchordoqui, S. A. Sharakin, M. E. Bertaina, T. Batsch, S. Blin-Bondil, Ken'ichi Nomoto, I. Kaneko, Piero Vallania, D. Supanitsky, M. D. Sabau, J. Bayer, C. de la Taille, K. Katahira, A. Ebersoldt, Shoichi Ogio, Yoshiki Tsunesada, Hajime Takami, Masaki Fukushima, T. Nakamura, B. A. Khrenov, H. Miyamoto, J. Fujimoto, P. Bobik, and Valentina Scotti
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Physics ,Particle physics ,Space and Planetary Science ,Astronomy and Astrophysics ,Astrophysics - Abstract
The online version of the original article can be found at http://dx.doi.org/10.1007/s10686-013-9371-0 .
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- 2015
120. Aquinas on Matter and Form and the Elements : A Translation and Interpretation of the De Principiis Naturae and the De Mixtione Elementorum of St. Thomas Aquinas
- Author
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BOBIK, JOSEPH and BOBIK, JOSEPH
- Published
- 1998
121. JEM-EUSO: Meteor and nuclearite observations
- Author
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K. Mannheim, P. Reardon, T. Nonaka, Toshikazu Ebisuzaki, M. Kleifges, M. S. Briggs, Y. Tsunesada, P. Picozza, H. Salazar, A. Marini, F. Guarino, G. Siemieniec-Oziȩbło, M. Nagata, Dmitry V. Naumov, I. H. Park, R. Young, M. D. Rodríguez Frías, G. Distratis, Satoshi Wada, Hiroyuki Sagawa, M. Flamini, Y. Takizawa, C. Blaksley, Tomás Belenguer, Frederic Trillaud, Silvia Ferrarese, S. Ogio, J. Fujimoto, I. V. Yashin, T. Ogawa, J. Szabelski, M. I. Panasyuk, L. Wiencke, H. Sato, A. Guzman, D. Allard, M. E. Bertaina, E. Kuznetsov, F. Tajima, J. Błȩcki, J. N. Capdevielle, L. Santiago Crúz, H. Ohmori, H. Ikeda, I. Kreykenbohm, T. Batsch, N. Inoue, K. Higashide, J. Yang, D. Cline, Gali Garipov, Y. Mizumoto, L. Villaseñor, R. Bechini, C. Tenzer, P. Bobik, S. Biktemerova, Ke Fang, Y. Hachisu, R. Tsenov, M. Nagano Murakami, A. Haungs, M. Wille, H. Lim, M. C. Maccarone, Maxim Gonchar, M. Serra, E. G. Judd, T. Murakami, J. Karczmarczyk, H. J. Crawford, Angela V. Olinto, Fernando López, Andrea Santangelo, S. Blin-Bondil, C. Lachaud, V. Andreev, Ovidiu Vaduvescu, M. Lacombe, A. Kusenko, T. J. Weiler, P. Prat, S. Piraino, S. Dagoret-Campagne, A. Cellino, Y. Arai, S. Watanabe, D. Yonetoku, T. Wibig, Y. Miyazaki, G. Vankova, M. Ave Pernas, H. Prieto, C. De Donato, G. Giraudo, T. Kajino, J. N. Albert, P. Orleański, G. Masciantonio, Thomas Schanz, H. Schieler, M. Bonamente, A. J. de Castro, Claudio Cassardo, M. Fukushima, Z. Plebaniak, T. Tomida, M. Dupieux, J. Licandro, D. Maravilla, S. Sánchez, B. Mot, T. Paul, F. Dulucq, V. Connaughton, S. Ahmad, M. Unger, F. Ronga, I. Rodríguez, T. Peter, M. Chikawa, P. Vallania, Livio Conti, A. Zuccaro Marchi, A. A. Berlind, H. Takami, I. Kaneko, B. Szabelska, M. Sakata, M. Reyes, T. Napolitano, K. Mase, O. Tibolla, M. Weber, C. De Santis, L. Marcelli, A. Insolia, T. Patzak, Jörn Wilms, Alfonso Monaco, D. Monnier-Ragaigne, A. Segreto, Yukihiro Takahashi, Francesco Fenu, J. S. Kim, J. Hernández Carretero, V. S. Morozenko, O. A. Saprykin, D. Campana, Y. Itow, L. Anchordoqui, J. Lee, H. Rothkaehl, G. Sáez-Cano, E. Joven, J. F. Valdés-Galicia, L. del Peral, A. Franceschi, E. Parizot, B. Keilhauer, T. Shibata, M. Rybczyński, G. Osteria, M. J. Christl, P. Gorodetzky, C. Catalano, N. Blanc, D. Semikoz, S. Csorna, Hajime Yano, C. González Alvarado, Marco Casolino, T. Tajima, Claudio Fornaro, G. Cordero, F. Kajino, D. Ikeda, L. Valore, C. Moretto, H. H. Silva Lopez, M. D. Sabau, M. Putis, Francesco Isgrò, Roberto Bellotti, O. Martinez, G. Catalano, V. Scotti, K. Shinozaki, A. Sobey, K. Asano, J. Bayer, Lech Wiktor Piotrowski, H. W. Park, R. Nava, J. H. Adams, K. Belov, Y. Karadzhov, G. Prévôt, A. Ebersoldt, J. Watts, C. de la Taille, C. Pennypacker, B. Pastircak, K. Katahira, Y. Kawasaki, D. Supanitsky, N. Sakaki, R. Matev, B. A. Khrenov, H. Miyamoto, T. Pierog, Rossella Caruso, G. Castellinic, M. Sanz Palomino, S. Falk, A. Pollini, S. Yoshida, A. Neronov, Z. Włodarczyk, Sergei A. Sharakin, N. Tone, I. Fernández-Gómez, F. Cafagna, M. Ricci, P. von Ballmoos, D. Kolev, Pavel Klimov, J. A. Morales de los Ríos, L. Tkachev, S. Perez Cano, G. Gelmini, P. Galeotti, M. Yu. Zotov, M. Bogomilov, Y. Kurihara, Simona Toscano, A. Bruno, M. Karus, Susana Briz, S. Selmane, K. Kawai, Akinori Saito, K. Tsuno, T. Mernik, S. Nagataki, R. Cremonini, Y. Uchihori, J. Blümer, Domenico Finco, K. Słomińska, P. L. Biermann, A. Anzalone, T. Nakamura, Susumu Inoue, M. Di Martino, K. Nomoto, I. Rusinov, T. Tymieniecka, J. Sledd, G. Medina-Tanco, F. Sarazin, H. M. Shimizu, J. Geary, N. De Simone, Mitsuteru Sato, G. Modestino, M. Suzuki, A. Jung, K. Yoshida, P. Barrillon, T. Yamamoto, M. Roth, P. Baragatti, T. Shirahama, R. Engel, S. W. Kim, J. Watanabe, M. Takeda, N. Tajima, Y. Yamamoto, G. Roudil, B. Harlov, Carlo Vigorito, K. Kudela, A. Dell’Oro, H. Tokuno, T. Sugiyama, Adams, J. H., Ahmad, S., Albert, J. N., Allard, D., Anchordoqui, L., Andreev, V., Anzalone, A., Arai, Y., Asano, K., Ave Pernas, M., Baragatti, P., Barrillon, P., Batsch, T., Bayer, J., Bechini, R., Belenguer, T., Bellotti, R., Belov, K., Berlind, A. A., Bertaina, M., Biermann, P. L., Biktemerova, S., Blaksley, C., Blanc, N., Błȩcki, J., Blin Bondil, S., Blümer, J., Bobik, P., Bogomilov, M., Bonamente, M., Briggs, M. S., Briz, S., Bruno, A., Cafagna, F., Campana, D., Capdevielle, J. N., Caruso, R., Casolino, M., Cassardo, C., Castellinic, G., Catalano, C., Catalano, G., Cellino, A., Chikawa, M., Christl, M. J., Cline, D., Connaughton, V., Conti, L., Cordero, G., Crawford, H. J., Cremonini, R., Csorna, S., Dagoret Campagne, S., de Castro, A. J., De Donato, C., de la Taille, C., De Santis, C., del Peral, L., Dell’Oro, A., De Simone, N., Di Martino, M., Distratis, G., Dulucq, F., Dupieux, M., Ebersoldt, A., Ebisuzaki, T., Engel, R., Falk, S., Fang, K., Fenu, F., Fernández Gómez, I., Ferrarese, S., Finco, D., Flamini, M., Fornaro, C., Franceschi, A., Fujimoto, J., Fukushima, M., Galeotti, P., Garipov, G., Geary, J., Gelmini, G., Giraudo, G., Gonchar, M., González Alvarado, C., Gorodetzky, P., Guarino, Fausto, Guzmán, A., Hachisu, Y., Harlov, B., Haungs, A., Hernández Carretero, J., Higashide, K., Ikeda, D., Ikeda, H., Inoue, N., Inoue, S., Insolia, A., Isgro', Francesco, Itow, Y., Joven, E., Judd, E. G., Jung, A., Kajino, F., Kajino, T., Kaneko, I., Karadzhov, Y., Karczmarczyk, J., Karus, M., Katahira, K., Kawai, K., Kawasaki, Y., Keilhauer, B., Khrenov, B. A., Kim, J. S., Kim, S. W., Kleifges, M., Klimov, P. A., Kolev, D., Kreykenbohm, I., Kudela, K., Kurihara, Y., Kusenko, A., Kuznetsov, E., Lacombe, M., Lachaud, C., Lee, J., Licandro, J., Lim, H., López, F., Maccarone, M. C., Mannheim, K., Maravilla, D., Marcelli, L., Marini, A., Martinez, O., Masciantonio, G., Mase, K., Matev, R., Medina Tanco, G., Mernik, T., Miyamoto, H., Miyazaki, Y., Mizumoto, Y., Modestino, G., Monaco, A., Monnier Ragaigne, D., Morales de los Ríos, J. A., Moretto, C., Morozenko, V. S., Mot, B., Murakami, T., Murakami, M. Nagano, Nagata, M., Nagataki, S., Nakamura, T., Napolitano, T., Naumov, D., Nava, R., Neronov, A., Nomoto, K., Nonaka, T., Ogawa, T., Ogio, S., Ohmori, H., Olinto, A. V., Orleański, P., Osteria, G., Panasyuk, M. I., Parizot, E., Park, I. H., Park, H. W., Pastircak, B., Patzak, T., Paul, T., Pennypacker, C., Perez Cano, S., Peter, T., Picozza, P., Pierog, T., Piotrowski, L. W., Piraino, S., Plebaniak, Z., Pollini, A., Prat, P., Prévôt, G., Prieto, H., Putis, M., Reardon, P., Reyes, M., Ricci, M., Rodríguez, I., Rodríguez Frías, M. D., Ronga, F., Roth, M., Rothkaehl, H., Roudil, G., Rusinov, I., Rybczyński, M., Sabau, M. D., Sáez Cano, G., Sagawa, H., Saito, A., Sakaki, N., Sakata, M., Salazar, H., Sánchez, S., Santangelo, A., Santiago Crúz, L., Sanz Palomino, M., Saprykin, O., Sarazin, F., Sato, H., Sato, M., Schanz, T., Schieler, H., Scotti, V., Segreto, A., Selmane, S., Semikoz, D., Serra, M., Sharakin, S., Shibata, T., Shimizu, H. M., Shinozaki, K., Shirahama, T., Siemieniec Oziȩbło, G., Silva López, H. H., Sledd, J., Słomińska, K., Sobey, A., Sugiyama, T., Supanitsky, D., Suzuki, M., Szabelska, B., Szabelski, J., Tajima, F., Tajima, N., Tajima, T., Takahashi, Y., Takami, H., Takeda, M., Takizawa, Y., Tenzer, C., Tibolla, O., Tkachev, L., Tokuno, H., Tomida, T., Tone, N., Toscano, S., Trillaud, F., Tsenov, R., Tsunesada, Y., Tsuno, K., Tymieniecka, T., Uchihori, Y., Unger, M., Vaduvescu, O., Valdés Galicia, J. F., Vallania, P., Valore, Laura, Vankova, G., Vigorito, C., Villaseñor, L., von Ballmoos, P., Wada, S., Watanabe, J., Watanabe, S., Watts, J., Weber, M., Weiler, T. J., Wibig, T., Wiencke, L., Wille, M., Wilms, J., Włodarczyk, Z., Yamamoto, T., Yamamoto, Y., Yang, J., Yano, H., Yashin, I. V., Yonetoku, D., Yoshida, K., Yoshida, S., Young, R., Zotov, M. Y. u., and Zuccaro Marchi, A.
- Subjects
Meteor (satellite) ,Solar System ,JEM-EUSO ,Meteors ,Nuclearites ,Space detectors ,Astronomy and Astrophysics ,Space and Planetary Science ,Ciencias Físicas ,Cosmic ray ,Astrophysics ,Primary (astronomy) ,Meteor ,Space detector ,Physics ,Nuclearite ,Meteoroid ,Astronomy ,Astronomy and Astrophysic ,Speed of light (cellular automaton) ,Astronomía ,Trajectory ,Satellite ,CIENCIAS NATURALES Y EXACTAS - Abstract
Meteor and fireball observations are key to the derivation of both the inventory and physical characterization of small solar system bodies orbiting in the vicinity of the Earth. For several decades, observation of these phenomena has only been possible via ground-based instruments. The proposed JEM-EUSO mission has the potential to become the first operational space-based platform to share this capability. In comparison to the observation of extremely energetic cosmic ray events, which is the primary objective of JEM-EUSO, meteor phenomena are very slow, since their typical speeds are of the order of a few tens of km/sec (whereas cosmic rays travel at light speed). The observing strategy developed to detect meteors may also be applied to the detection of nuclearites, which have higher velocities, a wider range of possible trajectories, but move well below the speed of light and can therefore be considered as slow events for JEM-EUSO. The possible detection of nuclearites greatly enhances the scientific rationale behind the JEM-EUSO mission. Fil: Bertaina, M.. Istituto Nazionale di Fisica Nucleare; Italia Fil: Cellino, A.. Istituto Nazionale di Fisica Nucleare; Italia Fil: Ronga, F.. Istituto Nazionale di Fisica Nucleare; Italia Fil: Adams, J. H.. University of Alabama in Huntsville; Estados Unidos Fil: Ahmad, S.. Ecole Polytechnique; Francia Fil: Albert, J. N.. Univ Paris-Sud; Francia Fil: Allard, D.. Univ Paris Diderot; Francia Fil: Anchordoqui, L.. University of Wisconsin-Milwaukee; Estados Unidos Fil: Andreev, V.. University of California; Estados Unidos Fil: Anzalone, A.. Istituto di Astrofisica Spaziale e Fisica Cosmica di Palermo; Italia Fil: Arai, Y.. High Energy Accelerator Research Organization (KEK); Japón Fil: Asano, K.. Tokyo Institute of Technology; Japón Fil: Ave Pernas, M.. Universidad de Alcalá; España Fil: Baragatti, P.. UTIU, Dipartimento di Ingegneria; Italia Fil: Barrillon, P.. Univ Paris-Sud; Francia Fil: Batsch, T.. National Centre for Nuclear Research; Polonia Fil: Bayer, J.. University of Tubingen; Alemania Fil: Bechini, R.. Istituto Nazionale di Fisica Nucleare; Italia Fil: Belenguer, T.. Instituto Nacional de Tecnica Aeroespacial (INTA; España Fil: Bellotti, R.. Istituto Nazionale di Fisica Nucleare; Italia Fil: Belov, K.. University of California; Estados Unidos Fil: Berlind, A. A.. Vanderbilt University; Estados Unidos Fil: Biermann, P. L.. Karlsruhe Institute of Technology (KIT); Alemania Fil: Biktemerova, S.. Joint Institute for Nuclear Research; Rusia Fil: Blaksley, C.. Univ Paris Diderot; Francia Fil: Blanc, N.. Swiss Center for Electronics and Microtechnology (CSEM; Suiza Fil: Blecki, J.. Space Research Centre of the Polish Academy of Sciences (CBK); Polonia Fil: Blin Bondil, S.. Ecole Polytechnique; Francia Fil: Supanitsky, Alberto Daniel. Consejo Nacional de Investigaciónes Científicas y Técnicas. Oficina de Coordinación Administrativa Ciudad Universitaria. Instituto de Astronomía y Física del Espacio. - Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales. Instituto de Astronomía y Física del Espacio; Argentina Fil: The JEM-EUSO Collaboration.
- Published
- 2015
122. The EUSO-Balloon pathfinder
- Author
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N. Tone, Daisuke Yonetoku, H. Ikeda, K. Mase, Francesco Isgrò, B. Keilhauer, Francesco Fenu, I. V. Yashin, Frederic Jean Ronga, L. Santiago Crúz, M. Yu. Zotov, Silvia Ferrarese, L. Marcelli, Susana Briz, I. Kreykenbohm, Vladimir Andreev, F. Dulucq, D. Ikeda, F. Sarazin, Andreas A. Berlind, A. Bruno, Patrick J. Reardon, Toshiki Tajima, G. Siemieniec-Oziȩbło, D. Kolev, Karl Mannheim, Valerie Connaughton, H. H. Silva Lopez, Marc Weber, K. Shinozaki, G. Masciantonio, Hitoshi Ohmori, Tomás Belenguer, G. Castellinic, H. Prieto, R. Cremonini, P. L. Biermann, Yoshiya Kawasaki, R. Nava, Michael S. Briggs, A. J. de Castro, N. Sakaki, I. Rusinov, S. Ahmad, Markus Roth, M. D. Rodríguez Frías, Alberto Cellino, Fausto Guarino, P. von Ballmoos, M. Ricci, L. Valore, I. Rodríguez, D. Allard, Rossella Caruso, T. Patzak, Toshiyuki Nonaka, Alfonso Monaco, M. E. Bertaina, Thomas J. Weiler, Yoshihiko Mizumoto, Taka Tomida, Z. Plebaniak, J. Blümer, Marcos Reyes, Tokonatsu Yamamoto, G. Roudil, M. Putis, A. Sobey, T. Murakami, O. Martinez, T. Shirahama, S. Sánchez, G. Catalano, Ken'ichi Nomoto, J. Karczmarczyk, J. N. Albert, Thomas Schanz, B. A. Khrenov, H. Miyamoto, S. Perez Cano, H. J. Crawford, L. R. Wiencke, G. Giraudo, A. Insolia, M. Kleifges, Humberto Ibarguen Salazar, C. De Santis, H. Tokuno, M. Flamini, Hanna Rothkaehl, Michiyuki Chikawa, Y. Takizawa, Livio Conti, M. Serra, A. Haungs, C. De Donato, Soon-Wook Kim, B. Harlov, Luis A. Anchordoqui, S. Piraino, Carlo Vigorito, T. Batsch, Hajime Yano, S. Falk, K. Kudela, Yoshimasa Kurihara, H. Schieler, M. Nagata, Piotr Orleanski, J. Geary, J. S. Kim, T. Shibata, I. Kaneko, K. Kawai, Akinori Saito, A. Zuccaro Marchi, V. S. Morozenko, Jörn Wilms, Roberto Bellotti, Dmitry V. Naumov, Y. Karadzhov, Mitsuteru Sato, N. De Simone, R. Young, O. A. Saprykin, M. Sakata, B. Mot, Javier Licandro, J.N. Capdevielle, Z. Włodarczyk, P. Picozza, Andrii Neronov, J. Lee, James H. Adams, J. Błȩcki, G. Distratis, A. Ebersoldt, J. F. Valdés-Galicia, L. Villaseñor, Yukihiro Takahashi, R. Bechini, Piero Vallania, R. Tsenov, H. Lim, N. Tajima, M. C. Maccarone, M. D. Sabau, Toshikazu Ebisuzaki, M. Suzuki, L. G. Tkachev, G. Sáez-Cano, A. Jung, S. Csorna, T. Pierog, J. Watanabe, Gali Garipov, Shigehiro Nagataki, Yoshiki Tsunesada, Simona Toscano, A. Pollini, Pavel Klimov, D. Supanitsky, M. Takeda, F. Cafagna, T. Paul, K. Yoshida, Marco Casolino, Claudio Fornaro, J. Bayer, G. Modestino, E. Joven, K. Higashide, Lech Wiktor Piotrowski, G. Vankova, Shigeto Watanabe, C. de la Taille, Ovidiu Vaduvescu, M. Lacombe, K. Katahira, Claudio Cassardo, Massimiliano Bonamente, M. Rybczyński, Valentina Scotti, H. Sato, Shoichi Ogio, Dmitri Semikoz, Yoshitaka Itow, Graciela B. Gelmini, Hajime Takami, A. Guzman, Jianyi Yang, Masaki Fukushima, C. Lachaud, E. Kuznetsov, G. Medina-Tanco, S. Biktemerova, T. Mernik, Y. Hachisu, Y. Arai, S. Dagoret-Campagne, D. Maravilla, G. Cordero, N. Inoue, L. del Peral, A. Franceschi, E. Parizot, David B. Cline, T. Nakamura, Y. Yamamoto, Katsuaki Asano, Alexander Kusenko, C. González Alvarado, J. A. Morales de los Ríos, Pierre Barrillon, S. Yoshida, J. Szabelski, K. Słomińska, E. G. Judd, Sergei A. Sharakin, Katsuhiko Tsuno, Susumu Inoue, Guillaume Prévôt, Satoshi Wada, M. Di Martino, A. Marini, A. Dell’Oro, Toshitaka Kajino, T. Ogawa, G. Osteria, C. Blaksley, T. Tymieniecka, J. Sledd, M. Sanz Palomino, Angela V. Olinto, Fernando López, Andrea Santangelo, R. Matev, M. Bogomilov, F. Tajima, F. Kajino, Ralph Engel, C. Moretto, P. Galeotti, M. Ave Pernas, H. W. Park, P. Gorodetzky, C. Tenzer, T. Sugiyama, Tadeusz Wibig, Ke Fang, Frederic Trillaud, M. Wille, M. Nagano Murakami, Y. Uchihori, J. Hernández Carretero, M. Unger, M. Dupieux, Barbara Szabelska, T. Peter, M. I. Panasyuk, S. Selmane, A. Anzalone, T. Napolitano, K. Belov, C. Catalano, D. Monnier-Ragaigne, A. Segreto, N. Blanc, S. Blin-Bondil, J. Fujimoto, P. Bobik, Hiroyuki Sagawa, Maxim Gonchar, Hirohiko M. Shimizu, P. Baragatti, J. Watts, C. Pennypacker, B. Pastircak, P. Prat, I. Fernández-Gómez, M. Karus, Domenico Finco, D. Campana, Inkyu Park, Y. Miyazaki, Mark Christl, O. Tibolla, APC - Astrophysique des Hautes Energies (APC - AHE), AstroParticule et Cosmologie (APC (UMR_7164)), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Observatoire de Paris, PSL Research University (PSL)-PSL Research University (PSL)-Université Paris Diderot - Paris 7 (UPD7)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Observatoire de Paris, PSL Research University (PSL)-PSL Research University (PSL)-Université Paris Diderot - Paris 7 (UPD7)-Dipartimento di Astronomia, Universita degli Studi di Bologna, Università di Bologna [Bologna] (UNIBO)-Università di Bologna [Bologna] (UNIBO), Observatoire de Paris, Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris Diderot - Paris 7 (UPD7)-Centre National de la Recherche Scientifique (CNRS)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Observatoire de Paris, Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris Diderot - Paris 7 (UPD7)-Centre National de la Recherche Scientifique (CNRS)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Dipartimento di Astronomia, Universita degli Studi di Bologna, Alma Mater Studiorum Università di Bologna [Bologna] (UNIBO)-Alma Mater Studiorum Università di Bologna [Bologna] (UNIBO), Adams, J. H., Ahmad, S., Albert, J. N., Allard, D., Anchordoqui, L., Andreev, V., Anzalone, A., Arai, Y., Asano, K., Ave Pernas, M., Baragatti, P., Barrillon, P., Batsch, T., Bayer, J., Bechini, R., Belenguer, T., Bellotti, R., Belov, K., Berlind, A. A., Bertaina, M., Biermann, P. L., Biktemerova, S., Blaksley, C., Blanc, N., Błȩcki, J., Blin Bondil, S., Blã¼mer, J., Bobik, P., Bogomilov, M., Bonamente, M., Briggs, M. S., Briz, S., Bruno, A., Cafagna, F., Campana, D., Capdevielle, J. N., Caruso, R., Casolino, M., Cassardo, C., Castellinic, G., Catalano, C., Catalano, G., Cellino, A., Chikawa, M., Christl, M. J., Cline, D., Connaughton, V., Conti, L., Cordero, G., Crawford, H. J., Cremonini, R., Csorna, S., Dagoret Campagne, S., de Castro, A. J., De Donato, C., de la Taille, C., De Santis, C., del Peral, L., Dell’Oro, A., De Simone, N., Di Martino, M., Distratis, G., Dulucq, F., Dupieux, M., Ebersoldt, A., Ebisuzaki, T., Engel, R., Falk, S., Fang, K., Fenu, F., Fernández Gómez, I., Ferrarese, S., Finco, D., Flamini, M., Fornaro, C., Franceschi, A., Fujimoto, J., Fukushima, M., Galeotti, P., Garipov, G., Geary, J., Gelmini, G., Giraudo, G., Gonchar, M., González Alvarado, C., Gorodetzky, P., Guarino, Fausto, Guzmã¡n, A., Hachisu, Y., Harlov, B., Haungs, A., Hernández Carretero, J., Higashide, K., Ikeda, D., Ikeda, H., Inoue, N., Inoue, S., Insolia, A., Isgro', Francesco, Itow, Y., Joven, E., Judd, E. G., Jung, A., Kajino, F., Kajino, T., Kaneko, I., Karadzhov, Y., Karczmarczyk, J., Karus, M., Katahira, K., Kawai, K., Kawasaki, Y., Keilhauer, B., Khrenov, B. A., Kim, J. S., Kim, S. W., Kleifges, M., Klimov, P. A., Kolev, D., Kreykenbohm, I., Kudela, K., Kurihara, Y., Kusenko, A., Kuznetsov, E., Lacombe, M., Lachaud, C., Lee, J., Licandro, J., Lim, H., Lã³pez, F., Maccarone, M. C., Mannheim, K., Maravilla, D., Marcelli, L., Marini, A., Martinez, O., Masciantonio, G., Mase, K., Matev, R., Medina Tanco, G., Mernik, T., Miyamoto, H., Miyazaki, Y., Mizumoto, Y., Modestino, G., Monaco, A., Monnier Ragaigne, D., Morales de los RÃos, J. A., Moretto, C., Morozenko, V. S., Mot, B., Murakami, T., Murakami, M. Nagano, Nagata, M., Nagataki, S., Nakamura, T., Napolitano, T., Naumov, D., Nava, R., Neronov, A., Nomoto, K., Nonaka, T., Ogawa, T., Ogio, S., Ohmori, H., Olinto, A. V., Orleański, P., Osteria, G., Panasyuk, M. I., Parizot, E., Park, I. H., Park, H. W., Pastircak, B., Patzak, T., Paul, T., Pennypacker, C., Perez Cano, S., Peter, T., Picozza, P., Pierog, T., Piotrowski, L. W., Piraino, S., Plebaniak, Z., Pollini, A., Prat, P., Prã©vã´t, G., Prieto, H., Putis, M., Reardon, P., Reyes, M., Ricci, M., Rodrãguez, I., RodrÃguez FrÃas, M. D., Ronga, F., Roth, M., Rothkaehl, H., Roudil, G., Rusinov, I., Rybczyński, M., Sabau, M. D., Sáez Cano, G., Sagawa, H., Saito, A., Sakaki, N., Sakata, M., Salazar, H., Sã¡nchez, S., Santangelo, A., Santiago Crúz, L., Sanz Palomino, M., Saprykin, O., Sarazin, F., Sato, H., Sato, M., Schanz, T., Schieler, H., Scotti, V., Segreto, A., Selmane, S., Semikoz, D., Serra, M., Sharakin, S., Shibata, T., Shimizu, H. M., Shinozaki, K., Shirahama, T., Siemieniec Oziȩbło, G., Silva López, H. H., Sledd, J., Słomińska, K., Sobey, A., Sugiyama, T., Supanitsky, D., Suzuki, M., Szabelska, B., Szabelski, J., Tajima, F., Tajima, N., Tajima, T., Takahashi, Y., Takami, H., Takeda, M., Takizawa, Y., Tenzer, C., Tibolla, O., Tkachev, L., Tokuno, H., Tomida, T., Tone, N., Toscano, S., Trillaud, F., Tsenov, R., Tsunesada, Y., Tsuno, K., Tymieniecka, T., Uchihori, Y., Unger, M., Vaduvescu, O., Valdés Galicia, J. F., Vallania, P., Valore, Laura, Vankova, G., Vigorito, C., Villaseã±or, L., von Ballmoos, P., Wada, S., Watanabe, J., Watanabe, S., Watts, J., Weber, M., Weiler, T. J., Wibig, T., Wiencke, L., Wille, M., Wilms, J., Włodarczyk, Z., Yamamoto, T., Yamamoto, Y., Yang, J., Yano, H., Yashin, I. V., Yonetoku, D., Yoshida, K., Yoshida, S., Young, R., Zotov, M. Y. u., Zuccaro Marchi, A., Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Observatoire de Paris, Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-Université Paris Diderot - Paris 7 (UPD7)-Centre National de la Recherche Scientifique (CNRS)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Observatoire de Paris, and Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-Université Paris Diderot - Paris 7 (UPD7)-Centre National de la Recherche Scientifique (CNRS)-Alma Mater Studiorum Università di Bologna [Bologna] (UNIBO)
- Subjects
Ciencias Físicas ,JEM-EUSO ,cosmic-rays ,Cosmic ray ,01 natural sciences ,law.invention ,Telescope ,Observatory ,law ,0103 physical sciences ,International Space Station ,Ultraviolet light ,Air-fluorescence ,Balloon experiment ,UHECR ,Astronomy and Astrophysics ,Space and Planetary Science ,010303 astronomy & astrophysics ,Remote sensing ,Physics ,010308 nuclear & particles physics ,[SDU.ASTR.HE]Sciences of the Universe [physics]/Astrophysics [astro-ph]/High Energy Astrophysical Phenomena [astro-ph.HE] ,Astronomy ,Astronomy and Astrophysic ,Near space ,Astronomía ,Pathfinder ,[SDU]Sciences of the Universe [physics] ,Temporal resolution ,UHECR, Air-fluorescence, JEM-EUSO, Balloon experiment ,EUSO-Balloon ,CIENCIAS NATURALES Y EXACTAS - Abstract
注記: The JEM-EUSO Collaboration 289名 [所属. 宇宙航空研究開発機構宇宙科学研究所 (JAXA)(ISAS) 池田, 博一; 鈴木, 睦; 矢野, 創], Accepted: 2015-06-11, Note: The JEM-EUSO Collaboration 289members [Affiliation. Institute of Space and Astronautical Science, Japan Aerospace Exploration Agency (JAXA)(ISAS) Ikeda, Hirokazu; Suzuki, Makoto; Yano, Hajime], 資料番号: SA1150237000
- Published
- 2015
123. Ground-based tests of JEM-EUSO components at the Telescope Array site, 'EUSO-TA'
- Author
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Hiroyuki Sagawa, A. Bruno, M. Rybczyński, Alfonso Monaco, G. Cordero, N. Tone, O. Martinez, C. Tenzer, L. Tkachev, Y. Uchihori, E. Kuznetsov, Ovidiu Vaduvescu, K. Nomoto, I. Kreykenbohm, Maxim Gonchar, R. Matev, T. Mernik, G. Catalano, M. Lacombe, Claudio Cassardo, A. Anzalone, T. Batsch, Roberto Bellotti, K. Mannheim, M. Serra, M. Yu. Zotov, Susana Briz, Satoshi Wada, T. Ogawa, C. De Santis, S. Blin-Bondil, Y. Kawasaki, R. Young, N. Inoue, K. Higashide, I. V. Yashin, T. Tajima, J. Bayer, T. Nonaka, Angela V. Olinto, Fernando López, Andrea Santangelo, A. Pollini, Pavel Klimov, M. Di Martino, S. Falk, V. Andreev, G. Giraudo, T. Kajino, T. Tymieniecka, J. Sledd, F. Tajima, R. Tsenov, J. Yang, D. Cline, A. Dell’Oro, I. Kaneko, B. Szabelska, G. Medina-Tanco, F. Guarino, F. Ronga, D. Yonetoku, T. Wibig, T. Napolitano, S. Nagataki, Tomás Belenguer, J. Blümer, S. Watanabe, P. Orleański, G. Masciantonio, Silvia Ferrarese, Mitsuteru Sato, H. Tokuno, H. Schieler, A. J. de Castro, M. Fukushima, Z. Plebaniak, M. J. Christl, R. Bechini, A. Insolia, J. Błȩcki, I. Rodríguez, H. Lim, M. C. Maccarone, B. Keilhauer, J. N. Capdevielle, L. Santiago Crúz, L. Wiencke, J. Watts, C. Pennypacker, C. González Alvarado, G. Osteria, M. I. Panasyuk, P. L. Biermann, H. Sato, M. Nagano Murakami, T. Sugiyama, L. Anchordoqui, I. H. Park, B. Pastircak, K. Asano, A. Guzman, S. Ogio, Francesco Isgrò, J. Fujimoto, B. A. Khrenov, H. Miyamoto, F. Kajino, I. Rusinov, Frederic Trillaud, G. Modestino, P. Reardon, M. Chikawa, L. Valore, P. Vallania, A. Jung, G. Siemieniec-Oziȩbło, A. Marini, H. Ikeda, G. Prévôt, H. J. Crawford, D. Supanitsky, S. Perez Cano, M. Suzuki, M. Ricci, K. Shinozaki, N. Tajima, B. Mot, M. Karus, L. Villaseñor, T. Pierog, M. D. Rodríguez Frías, M. Kleifges, C. Moretto, P. Bobik, S. Biktemerova, H. W. Park, T. Paul, F. Dulucq, R. Nava, J. H. Adams, P. Galeotti, Y. Yamamoto, N. Sakaki, K. Tsuno, M. Nagata, Yukihiro Takahashi, M. Bogomilov, K. Belov, S. Sánchez, A. Ebersoldt, E. G. Judd, Domenico Finco, Rossella Caruso, Dmitry V. Naumov, K. Yoshida, M. Weber, Y. Karadzhov, M. Sanz Palomino, D. Allard, P. Barrillon, M. E. Bertaina, E. Joven, G. Distratis, J. F. Valdés-Galicia, Marco Casolino, D. Monnier-Ragaigne, A. Segreto, T. Shibata, D. Maravilla, K. Kawai, Y. Kurihara, H. Prieto, S. Csorna, G. Castellinic, Akinori Saito, G. Sáez-Cano, H. Rothkaehl, C. Catalano, Y. Hachisu, Claudio Fornaro, Y. Arai, T. Tomida, Gali Garipov, N. Blanc, H. H. Silva Lopez, C. De Donato, M. D. Sabau, M. Putis, A. Sobey, G. Roudil, D. Semikoz, K. Słomińska, H. Takami, J. Licandro, M. Bonamente, T. Peter, T. Nakamura, P. Gorodetzky, J. S. Kim, V. S. Morozenko, B. Harlov, S. Selmane, Carlo Vigorito, Hajime Yano, K. Kudela, P. Prat, S. Piraino, S. Ahmad, M. Unger, G. Vankova, M. Sakata, A. Neronov, C. Lachaud, S. Dagoret-Campagne, R. Cremonini, M. Reyes, L. Marcelli, Z. Włodarczyk, D. Kolev, J. N. Albert, Thomas Schanz, T. Yamamoto, T. Patzak, I. Fernández-Gómez, F. Cafagna, P. von Ballmoos, G. Gelmini, P. Baragatti, Toshikazu Ebisuzaki, M. Ave Pernas, F. Sarazin, Livio Conti, Sergei A. Sharakin, A. Zuccaro Marchi, A. A. Berlind, Jörn Wilms, Simona Toscano, O. A. Saprykin, H. M. Shimizu, J. Geary, V. Scotti, Ke Fang, T. Murakami, N. De Simone, C. de la Taille, K. Katahira, A. Kusenko, J. Karczmarczyk, M. Dupieux, Y. Miyazaki, L. del Peral, A. Franceschi, E. Parizot, J. A. Morales de los Ríos, Susumu Inoue, M. S. Briggs, Y. Tsunesada, P. Picozza, H. Salazar, K. Mase, O. Tibolla, J. Hernández Carretero, D. Campana, J. Lee, H. Ohmori, M. Wille, A. Cellino, M. Roth, Lech Wiktor Piotrowski, T. Shirahama, S. Yoshida, R. Engel, S. W. Kim, J. Watanabe, M. Takeda, A. Haungs, T. J. Weiler, V. Connaughton, M. Flamini, Y. Takizawa, C. Blaksley, J. Szabelski, Y. Mizumoto, Francesco Fenu, Y. Itow, D. Ikeda, Adams, J. H., Ahmad, S., Albert, J. N., Allard, D., Anchordoqui, L., Andreev, V., Anzalone, A., Arai, Y., Asano, K., Ave Pernas, M., Baragatti, P., Barrillon, P., Batsch, T., Bayer, J., Bechini, R., Belenguer, T., Bellotti, R., Belov, K., Berlind, A. A., Bertaina, M., Biermann, P. L., Biktemerova, S., Blaksley, C., Blanc, N., Błȩcki, J., Blin Bondil, S., Blümer, J., Bobik, P., Bogomilov, M., Bonamente, M., Briggs, M. S., Briz, S., Bruno, A., Cafagna, F., Campana, D., Capdevielle, J. N., Caruso, R., Casolino, M., Cassardo, C., Castellinic, G., Catalano, C., Catalano, G., Cellino, A., Chikawa, M., Christl, M. J., Cline, D., Connaughton, V., Conti, L., Cordero, G., Crawford, H. J., Cremonini, R., Csorna, S., Dagoret Campagne, S., de Castro, A. J., De Donato, C., de la Taille, C., De Santis, C., del Peral, L., Dell’Oro, A., De Simone, N., Di Martino, M., Distratis, G., Dulucq, F., Dupieux, M., Ebersoldt, A., Ebisuzaki, T., Engel, R., Falk, S., Fang, K., Fenu, F., Fernández Gómez, I., Ferrarese, S., Finco, D., Flamini, M., Fornaro, C., Franceschi, A., Fujimoto, J., Fukushima, M., Galeotti, P., Garipov, G., Geary, J., Gelmini, G., Giraudo, G., Gonchar, M., González Alvarado, C., Gorodetzky, P., Guarino, Fausto, Guzmán, A., Hachisu, Y., Harlov, B., Haungs, A., Hernández Carretero, J., Higashide, K., Ikeda, D., Ikeda, H., Inoue, N., Inoue, S., Insolia, A., Isgro', Francesco, Itow, Y., Joven, E., Judd, E. G., Jung, A., Kajino, F., Kajino, T., Kaneko, I., Karadzhov, Y., Karczmarczyk, J., Karus, M., Katahira, K., Kawai, K., Kawasaki, Y., Keilhauer, B., Khrenov, B. A., Kim, J. S., Kim, S. W., Kleifges, M., Klimov, P. A., Kolev, D., Kreykenbohm, I., Kudela, K., Kurihara, Y., Kusenko, A., Kuznetsov, E., Lacombe, M., Lachaud, C., Lee, J., Licandro, J., Lim, H., López, F., Maccarone, M. C., Mannheim, K., Maravilla, D., Marcelli, L., Marini, A., Martinez, O., Masciantonio, G., Mase, K., Matev, R., Medina Tanco, G., Mernik, T., Miyamoto, H., Miyazaki, Y., Mizumoto, Y., Modestino, G., Monaco, A., Monnier Ragaigne, D., Morales de los Ríos, J. A., Moretto, C., Morozenko, V. S., Mot, B., Murakami, T., Murakami, M. Nagano, Nagata, M., Nagataki, S., Nakamura, T., Napolitano, T., Naumov, D., Nava, R., Neronov, A., Nomoto, K., Nonaka, T., Ogawa, T., Ogio, S., Ohmori, H., Olinto, A. V., Orleański, P., Osteria, G., Panasyuk, M. I., Parizot, E., Park, I. H., Park, H. W., Pastircak, B., Patzak, T., Paul, T., Pennypacker, C., Perez Cano, S., Peter, T., Picozza, P., Pierog, T., Piotrowski, L. W., Piraino, S., Plebaniak, Z., Pollini, A., Prat, P., Prévôt, G., Prieto, H., Putis, M., Reardon, P., Reyes, M., Ricci, M., Rodríguez, I., Rodríguez Frías, M. D., Ronga, F., Roth, M., Rothkaehl, H., Roudil, G., Rusinov, I., Rybczyński, M., Sabau, M. D., Sáez Cano, G., Sagawa, H., Saito, A., Sakaki, N., Sakata, M., Salazar, H., Sánchez, S., Santangelo, A., Santiago Crúz, L., Sanz Palomino, M., Saprykin, O., Sarazin, F., Sato, H., Sato, M., Schanz, T., Schieler, H., Scotti, V., Segreto, A., Selmane, S., Semikoz, D., Serra, M., Sharakin, S., Shibata, T., Shimizu, H. M., Shinozaki, K., Shirahama, T., Siemieniec Oziȩbło, G., Silva López, H. H., Sledd, J., Słomińska, K., Sobey, A., Sugiyama, T., Supanitsky, D., Suzuki, M., Szabelska, B., Szabelski, J., Tajima, F., Tajima, N., Tajima, T., Takahashi, Y., Takami, H., Takeda, M., Takizawa, Y., Tenzer, C., Tibolla, O., Tkachev, L., Tokuno, H., Tomida, T., Tone, N., Toscano, S., Trillaud, F., Tsenov, R., Tsunesada, Y., Tsuno, K., Tymieniecka, T., Uchihori, Y., Unger, M., Vaduvescu, O., Valdés Galicia, J. F., Vallania, P., Valore, Laura, Vankova, G., Vigorito, C., Villaseñor, L., von Ballmoos, P., Wada, S., Watanabe, J., Watanabe, S., Watts, J., Weber, M., Weiler, T. J., Wibig, T., Wiencke, L., Wille, M., Wilms, J., Włodarczyk, Z., Yamamoto, T., Yamamoto, Y., Yang, J., Yano, H., Yashin, I. V., Yonetoku, D., Yoshida, K., Yoshida, S., Young, R., Zotov, M. Y. u., and Zuccaro Marchi, A.
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Physics::Instrumentation and Detectors ,Ciencias Físicas ,Astrophysics::High Energy Astrophysical Phenomena ,JEM-EUSO ,Telescope array ,EUSO-TA ,Ultra high energy cosmic ray ,law.invention ,Telescope ,Light source ,Optics ,law ,Calibration ,Electronics ,Ultra high energy cosmic rays ,Astronomy and Astrophysics ,Space and Planetary Science ,Physics ,business.industry ,Detector ,Astrophysics::Instrumentation and Methods for Astrophysics ,Astronomy ,Astronomy and Astrophysic ,Astronomía ,Air shower ,High Energy Physics::Experiment ,business ,CIENCIAS NATURALES Y EXACTAS - Abstract
We are conducting tests of optical and electronics components of JEM-EUSO at the Telescope Array site in Utah with a ground-based "EUSO-TA" detector. The tests will include an engineering validation of the detector, cross-calibration of EUSO-TA with the TA fluorescence detector and observations of air shower events. Also, the proximity of the TA?s Electron Light Source will allow for convenient use of this calibration device. In this paper, we report initial results obtained with the EUSO-TA telescope. Fil: Adams, J. H.. University of Alabama in Huntsville; Estados Unidos Fil: Ahmad, S.. Ecole Polytechnique; Francia Fil: Albert, J. N.. Univ Paris-Sud; Francia Fil: Allard, D.. Univ Paris Diderot; Francia Fil: Anchordoqui, L.. University of Wisconsin-Milwaukee; Estados Unidos Fil: Andreev, V.. University of California; Estados Unidos Fil: Anzalone, A.. INAF - Istituto di Astrofisica Spaziale e Fisica Cosmica di Palermo; Italia Fil: Arai, Y.. High Energy Accelerator Research Organization (KEK); Japón Fil: Asano, K.. Tokyo Institute of Technology; Japón Fil: Ave Pernas, M.. Universidad de Alcala (UAH); España Fil: Barrillon, P.. Univ Paris-Sud; Francia Fil: Batsch, T.. Lomonosov Moscow State University; Rusia Fil: Bayer, J.. University of Tubingen; Alemania Fil: Bechini, R.. Universita’ di Torino; Italia Fil: Belenguer, T.. Instituto Nacional de Tecnica Aeroespacial (INTA); España Fil: Bellotti, R.. Istituto Nazionale di Fisica Nucleare; Italia Fil: Belov, K.. University of California; Estados Unidos Fil: Berlind, A. A.. Vanderbilt University; Estados Unidos Fil: Bertaina, M.. Istituto Nazionale di Fisica Nucleare; Italia Fil: Biermann, P. L.. Karlsruhe Institute of Technology (KIT); Alemania Fil: Biktemerova, S.. Joint Institute for Nuclear Research; Rusia Fil: Blaksley, C.. Univ Paris Diderot; Francia Fil: Blanc, N.. Swiss Center for Electronics and Microtechnology (CSEM); Suiza Fil: Blacki, J.. Space Research Centre of the Polish Academy of Sciences (CBK); Polonia Fil: Blin Bondil, S.. Ecole Polytechnique; Francia Fil: Blumer, J.. Karlsruhe Institute of Technology (KIT); Alemania Fil: Bobik, P.. Institute of Experimental Physics; Eslovaquia Fil: Bogomilov, M.. University of Sofia; Bulgaria Fil: Bonamente, M.. University of Alabama in Huntsville; Estados Unidos Fil: Supanitsky, Alberto Daniel. Consejo Nacional de Investigaciónes Científicas y Técnicas. Oficina de Coordinación Administrativa Ciudad Universitaria. Instituto de Astronomía y Física del Espacio. - Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales. Instituto de Astronomía y Física del Espacio; Argentina Fil: Kawasaki, Yoshiya. RIKEN; Japón Fil: Piotrowski, Lech Wiktor. RIKEN; Japón Fil: Kawasaki, Yoshiya. Yoshiya; Japón Fil: Piotrowski, Lech Wiktor. Yoshiya; Japón Fil: The JEM-EUSO Collaboration ·.
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- 2015
124. Ultra high energy photons and neutrinos with JEM-EUSO
- Author
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M. Weber, D. Monnier-Ragaigne, A. Segreto, H. Rothkaehl, C. Catalano, B. Mot, S. Watanabe, N. Blanc, M. Bonamente, S. Ahmad, M. Unger, D. Semikoz, M. Sakata, M. Reyes, L. Marcelli, Yukihiro Takahashi, I. Rodríguez, M. Serra, R. Bechini, M. Rybczyński, C. González Alvarado, T. Murakami, J. Karczmarczyk, F. Kajino, Marco Casolino, Claudio Fornaro, S. Ogio, L. Valore, I. Kaneko, B. Szabelska, G. Cordero, T. Shirahama, S. Blin-Bondil, G. Siemieniec-Oziȩbło, H. Ikeda, H. W. Park, L. Villaseñor, V. Andreev, Roberto Bellotti, M. J. Christl, T. Paul, F. Dulucq, H. Sato, D. Yonetoku, A. Guzman, O. Martinez, K. Mannheim, T. Wibig, A. Bruno, E. G. Judd, K. Mase, O. Tibolla, M. S. Briggs, Y. Tsunesada, R. Engel, F. Guarino, P. Picozza, H. Salazar, A. Marini, M. Chikawa, A. Jung, J. Watts, C. Pennypacker, P. Vallania, F. Tajima, D. Campana, J. Lee, T. Shibata, M. D. Sabau, Silvia Ferrarese, B. Pastircak, D. Allard, R. Matev, M. Sanz Palomino, A. Ebersoldt, M. E. Bertaina, K. Yoshida, M. Putis, A. Sobey, A. Neronov, A. Haungs, I. H. Park, D. Maravilla, J. Fujimoto, M. Karus, C. Tenzer, H. H. Silva Lopez, Gali Garipov, K. Shinozaki, R. Nava, J. H. Adams, Frederic Trillaud, Y. Uchihori, L. Wiencke, M. Nagata, Domenico Finco, N. Sakaki, P. Barrillon, Z. Włodarczyk, Y. Kurihara, Lech Wiktor Piotrowski, D. Kolev, G. Castellinic, Hiroyuki Sagawa, Rossella Caruso, Alfonso Monaco, S. Selmane, P. von Ballmoos, P. Prat, S. Piraino, G. Vankova, S. Sánchez, Dmitry V. Naumov, T. J. Weiler, S. Yoshida, E. Kuznetsov, H. Prieto, P. Bobik, S. Biktemerova, I. V. Yashin, R. Cremonini, C. Lachaud, S. Dagoret-Campagne, C. De Donato, S. W. Kim, G. Catalano, G. Gelmini, L. del Peral, A. Franceschi, E. Parizot, Maxim Gonchar, T. Nakamura, M. Nagano Murakami, Toshikazu Ebisuzaki, I. Kreykenbohm, T. Batsch, Y. Kawasaki, J. Watanabe, M. Takeda, G. Sáez-Cano, R. Tsenov, T. Patzak, Simona Toscano, S. Falk, J. S. Kim, T. Nonaka, V. S. Morozenko, J. N. Albert, K. Tsuno, J. A. Morales de los Ríos, V. Connaughton, Ke Fang, N. Inoue, Thomas Schanz, R. Young, M. D. Rodríguez Frías, Francesco Fenu, Tomás Belenguer, M. Roth, H. Ohmori, P. Reardon, Y. Itow, A. Kusenko, K. Higashide, G. Modestino, P. Orleański, Susumu Inoue, Livio Conti, P. Gorodetzky, A. Zuccaro Marchi, A. A. Berlind, G. Masciantonio, E. Joven, A. J. de Castro, M. Suzuki, Jörn Wilms, M. I. Panasyuk, J. Błȩcki, J. Yang, D. Cline, G. Giraudo, J. F. Valdés-Galicia, M. Kleifges, O. A. Saprykin, H. Lim, M. Dupieux, M. Fukushima, Z. Plebaniak, A. Insolia, M. C. Maccarone, T. Kajino, V. Scotti, S. Csorna, F. Ronga, M. Wille, F. Sarazin, T. Napolitano, D. Ikeda, C. de la Taille, B. Keilhauer, H. M. Shimizu, K. Katahira, K. Słomińska, J. Geary, L. Anchordoqui, Y. Karadzhov, G. Distratis, H. J. Crawford, N. De Simone, K. Asano, B. A. Khrenov, A. Cellino, G. Osteria, H. Miyamoto, J. N. Capdevielle, L. Santiago Crúz, Y. Hachisu, C. Moretto, Y. Arai, Francesco Isgrò, M. Ricci, M. Ave Pernas, M. Flamini, J. Licandro, G. Prévôt, K. Belov, T. Pierog, P. Galeotti, Sergei A. Sharakin, K. Nomoto, Y. Takizawa, C. Blaksley, J. Hernández Carretero, Mitsuteru Sato, J. Szabelski, Y. Mizumoto, T. Peter, T. Yamamoto, P. Baragatti, Y. Miyazaki, M. Di Martino, T. Tymieniecka, J. Sledd, G. Medina-Tanco, Ovidiu Vaduvescu, M. Lacombe, Claudio Cassardo, T. Mernik, A. Anzalone, C. De Santis, T. Tajima, Satoshi Wada, J. Bayer, T. Ogawa, A. Pollini, Pavel Klimov, Angela V. Olinto, Fernando López, Andrea Santangelo, H. Schieler, A. Dell’Oro, H. Tokuno, T. Sugiyama, P. L. Biermann, I. Rusinov, D. Supanitsky, S. Perez Cano, N. Tone, L. Tkachev, N. Tajima, Y. Yamamoto, M. Bogomilov, M. Yu. Zotov, Susana Briz, G. Roudil, B. Harlov, Carlo Vigorito, K. Kudela, S. Nagataki, J. Blümer, K. Kawai, Akinori Saito, T. Tomida, H. Takami, Hajime Yano, I. Fernández-Gómez, F. Cafagna, Adams, J. H., Ahmad, S., Albert, J. N., Allard, D., Anchordoqui, L., Andreev, V., Anzalone, A., Arai, Y., Asano, K., Ave Pernas, M., Baragatti, P., Barrillon, P., Batsch, T., Bayer, J., Bechini, R., Belenguer, T., Bellotti, R., Belov, K., Berlind, A. A., Bertaina, M., Biermann, P. L., Biktemerova, S., Blaksley, C., Blanc, N., Błȩcki, J., Blin Bondil, S., Blümer, J., Bobik, P., Bogomilov, M., Bonamente, M., Briggs, M. S., Briz, S., Bruno, A., Cafagna, F., Campana, D., Capdevielle, J. N., Caruso, R., Casolino, M., Cassardo, C., Castellinic, G., Catalano, C., Catalano, G., Cellino, A., Chikawa, M., Christl, M. J., Cline, D., Connaughton, V., Conti, L., Cordero, G., Crawford, H. J., Cremonini, R., Csorna, S., Dagoret Campagne, S., de Castro, A. J., De Donato, C., de la Taille, C., De Santis, C., del Peral, L., Dell’Oro, A., De Simone, N., Di Martino, M., Distratis, G., Dulucq, F., Dupieux, M., Ebersoldt, A., Ebisuzaki, T., Engel, R., Falk, S., Fang, K., Fenu, F., Fernández Gómez, I., Ferrarese, S., Finco, D., Flamini, M., Fornaro, C., Franceschi, A., Fujimoto, J., Fukushima, M., Galeotti, P., Garipov, G., Geary, J., Gelmini, G., Giraudo, G., Gonchar, M., González Alvarado, C., Gorodetzky, P., Guarino, Fausto, Guzmán, A., Hachisu, Y., Harlov, B., Haungs, A., Hernández Carretero, J., Higashide, K., Ikeda, D., Ikeda, H., Inoue, N., Inoue, S., Insolia, A., Isgro', Francesco, Itow, Y., Joven, E., Judd, E. G., Jung, A., Kajino, F., Kajino, T., Kaneko, I., Karadzhov, Y., Karczmarczyk, J., Karus, M., Katahira, K., Kawai, K., Kawasaki, Y., Keilhauer, B., Khrenov, B. A., Kim, J. S., Kim, S. W., Kleifges, M., Klimov, P. A., Kolev, D., Kreykenbohm, I., Kudela, K., Kurihara, Y., Kusenko, A., Kuznetsov, E., Lacombe, M., Lachaud, C., Lee, J., Licandro, J., Lim, H., López, F., Maccarone, M. C., Mannheim, K., Maravilla, D., Marcelli, L., Marini, A., Martinez, O., Masciantonio, G., Mase, K., Matev, R., Medina Tanco, G., Mernik, T., Miyamoto, H., Miyazaki, Y., Mizumoto, Y., Modestino, G., Monaco, A., Monnier Ragaigne, D., Morales de los Ríos, J. A., Moretto, C., Morozenko, V. S., Mot, B., Murakami, T., Murakami, M. Nagano, Nagata, M., Nagataki, S., Nakamura, T., Napolitano, T., Naumov, D., Nava, R., Neronov, A., Nomoto, K., Nonaka, T., Ogawa, T., Ogio, S., Ohmori, H., Olinto, A. V., Orleański, P., Osteria, G., Panasyuk, M. I., Parizot, E., Park, I. H., Park, H. W., Pastircak, B., Patzak, T., Paul, T., Pennypacker, C., Perez Cano, S., Peter, T., Picozza, P., Pierog, T., Piotrowski, L. W., Piraino, S., Plebaniak, Z., Pollini, A., Prat, P., Prévôt, G., Prieto, H., Putis, M., Reardon, P., Reyes, M., Ricci, M., Rodríguez, I., Rodríguez Frías, M. D., Ronga, F., Roth, M., Rothkaehl, H., Roudil, G., Rusinov, I., Rybczyński, M., Sabau, M. D., Sáez Cano, G., Sagawa, H., Saito, A., Sakaki, N., Sakata, M., Salazar, H., Sánchez, S., Santangelo, A., Santiago Crúz, L., Sanz Palomino, M., Saprykin, O., Sarazin, F., Sato, H., Sato, M., Schanz, T., Schieler, H., Scotti, V., Segreto, A., Selmane, S., Semikoz, D., Serra, M., Sharakin, S., Shibata, T., Shimizu, H. M., Shinozaki, K., Shirahama, T., Siemieniec Oziȩbło, G., Silva López, H. H., Sledd, J., Słomińska, K., Sobey, A., Sugiyama, T., Supanitsky, D., Suzuki, M., Szabelska, B., Szabelski, J., Tajima, F., Tajima, N., Tajima, T., Takahashi, Y., Takami, H., Takeda, M., Takizawa, Y., Tenzer, C., Tibolla, O., Tkachev, L., Tokuno, H., Tomida, T., Tone, N., Toscano, S., Trillaud, F., Tsenov, R., Tsunesada, Y., Tsuno, K., Tymieniecka, T., Uchihori, Y., Unger, M., Vaduvescu, O., Valdés Galicia, J. F., Vallania, P., Valore, Laura, Vankova, G., Vigorito, C., Villaseñor, L., von Ballmoos, P., Wada, S., Watanabe, J., Watanabe, S., Watts, J., Weber, M., Weiler, T. J., Wibig, T., Wiencke, L., Wille, M., Wilms, J., Włodarczyk, Z., Yamamoto, T., Yamamoto, Y., Yang, J., Yano, H., Yashin, I. V., Yonetoku, D., Yoshida, K., Yoshida, S., Young, R., Zotov, M. Y. u., and Zuccaro Marchi, A.
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space observation ,Ciencias Físicas ,Solar neutrino ,Astrophysics::High Energy Astrophysical Phenomena ,Cosmic ray ,Astrophysics ,Neutrino ,Neutrinos ,Photons ,Space observation ,Astronomy and Astrophysics ,Space and Planetary Science ,photons ,Physics ,Astrophysics::Instrumentation and Methods for Astrophysics ,Astronomy ,neutrinos ,Astronomy and Astrophysic ,Solar neutrino problem ,Photon ,Astronomía ,Cosmic neutrino background ,Neutrino detector ,Physics::Space Physics ,Measurements of neutrino speed ,High Energy Physics::Experiment ,Neutrino astronomy ,CIENCIAS NATURALES Y EXACTAS - Abstract
Ultra high energy photons and neutrinos are carriers of very importantastrophysical information. They may be produced at the sites of cosmic ray acceleration or during the propagation of the cosmic rays in the intergalactic medium. In contrast to charged cosmic rays, photon and neutrino arrival directions point to the production site because they are not deflected by the magnetic fields of the Galaxy or the intergalactic medium. In this work we study the characteristics of the longitudinal development of showers initiated by photons and neutrinos at the highestenergies. These studies are relevant for development of techniques for neutrino and photon identification by the JEM-EUSO telescope. In particular, we study the possibility of observing the multi-peak structure of very deep horizontal neutrino showers with JEM-EUSO. We also discuss the possibility to determine the flavor content of the incident neutrino flux by taking advantage of the different characteristics of thelongitudinal profiles generated by different type of neutrinos. This is of grate importance for the study of the fundamental properties of neutrinos at the highest energies. Regarding photons, we discuss the detectability of the cosmogenic component by JEM-EUSO and also estimate the expected upper limits on the photon fraction which can be obtained from the future JEM-EUSO data for the case in which there are no photons in the samples. Fil: Supanitsky, Alberto Daniel. Consejo Nacional de Investigaciónes Científicas y Técnicas. Oficina de Coordinación Administrativa Ciudad Universitaria. Instituto de Astronomía y Física del Espacio. - Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales. Instituto de Astronomía y Física del Espacio; Argentina Fil: Medina Tanco, G.. Universidad Nacional Autónoma de México; México Fil: Guzman, A.. University of Tubingen; Alemania Fil: Adams, J. H.. University of Alabama in Huntsville; Estados Unidos Fil: Ahmad, S.. Ecole Polytechnique; Francia Fil: Albert, J. N.. Univ Paris-Sud; Francia Fil: Allard, D.. Univ Paris Diderot; Francia Fil: Anchordoqui, L.. University of Wisconsin-Milwaukee; Estados Unidos Fil: Andreev, V.. University of California; Estados Unidos Fil: Anzalone, A.. Istituto di Astrofisica Spaziale e Fisica Cosmica di Palermo; Italia Fil: Arai, Y.. High Energy Accelerator Research Organization (KEK); Japón Fil: Asano, K.. Tokyo Institute of Technology; Japón Fil: Ave Pernas, M.. Universidad de Alcalá; España Fil: Baragatti, P.. UTIU, Dipartimento di Ingegneria; Italia Fil: Barrillon, P.. Univ Paris-Sud; Francia Fil: Batsch, T.. National Centre for Nuclear Research; Polonia Fil: Bayer, J.. University of Tubingen; Alemania Fil: Bechini, R.. Istituto Nazionale di Fisica Nucleare; Italia Fil: Belenguer, T.. Instituto Nacional de Tecnica Aeroespacial (INTA); España Fil: Bellotti, R.. Istituto Nazionale di Fisica Nucleare; Italia Fil: Belov, K.. University of California; Estados Unidos Fil: Berlind, A. A.. Vanderbilt University; Estados Unidos Fil: Bertaina, M.. Istituto Nazionale di Fisica Nucleare; Italia Fil: Biermann, P. L.. Karlsruhe Institute of Technology (KIT); Alemania Fil: Biktemerova, S.. Joint Institute for Nuclear Research; Rusia Fil: Blaksley, C.. Univ Paris Diderot; Francia Fil: Blanc, N.. Swiss Center for Electronics and Microtechnology (CSEM); Suiza Fil: Blecki, J.. Space Research Centre of the Polish Academy of Sciences (CBK); Polonia Fil: Blin-Bondil, S.. Ecole Polytechnique; Francia Fil: Blumer, J.. Karlsruhe Institute of Technology (KIT); Alemania Fil: The JEM-EUSO Collaboration.
- Published
- 2015
125. The JEM-EUSO instrument
- Author
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M. Weber, G. Osteria, K. Shinozaki, M. Roth, A. Bruno, D. Monnier-Ragaigne, A. Segreto, R. Nava, J. H. Adams, Satoshi Wada, P. Prat, N. Sakaki, T. Ogawa, H. Rothkaehl, S. Piraino, G. Vankova, C. Catalano, N. Blanc, D. Semikoz, C. De Santis, Angela V. Olinto, Fernando López, Andrea Santangelo, P. Reardon, M. Kleifges, G. Distratis, T. Patzak, Rossella Caruso, Francesco Isgrò, G. Prévôt, T. Pierog, Y. Uchihori, S. Selmane, M. Bonamente, R. Cremonini, S. Ahmad, M. Unger, G. Castellinic, P. von Ballmoos, I. H. Park, S. Watanabe, A. Jung, M. Sakata, M. Reyes, L. Marcelli, M. Ave Pernas, J. Fujimoto, K. Yoshida, P. Barrillon, T. Murakami, J. Karczmarczyk, K. Mase, O. Tibolla, D. Campana, J. Lee, Y. Hachisu, Y. Arai, I. Rodríguez, R. Bechini, H. Sato, A. Guzman, T. Tajima, J. Bayer, J. Licandro, H. Schieler, S. Perez Cano, T. Napolitano, P. Bobik, S. Biktemerova, T. Nonaka, Tomás Belenguer, M. S. Briggs, I. V. Yashin, Y. Tsunesada, P. Picozza, H. Salazar, J. Hernández Carretero, T. Peter, E. G. Judd, L. Anchordoqui, A. Pollini, Pavel Klimov, L. del Peral, A. Franceschi, E. Parizot, R. Tsenov, M. I. Panasyuk, T. Shirahama, J. Watts, C. González Alvarado, G. Roudil, S. Blin-Bondil, T. Tomida, Y. Miyazaki, H. Takami, P. Orleański, Roberto Bellotti, C. Pennypacker, B. Pastircak, M. Chikawa, V. Andreev, M. Bogomilov, H. Prieto, B. Harlov, C. Moretto, Carlo Vigorito, Sergei A. Sharakin, J. A. Morales de los Ríos, G. Masciantonio, A. J. de Castro, K. Kudela, H. Ohmori, D. Supanitsky, R. Engel, H. J. Crawford, P. Vallania, F. Kajino, D. Yonetoku, M. Di Martino, C. De Donato, M. Fukushima, Z. Plebaniak, A. Insolia, Hajime Yano, V. Scotti, M. Rybczyński, Susumu Inoue, T. Wibig, K. Belov, K. Nomoto, B. Keilhauer, L. Valore, C. de la Taille, M. Wille, J. N. Capdevielle, L. Santiago Crúz, T. Tymieniecka, G. Cordero, M. Karus, K. Kawai, E. Joven, A. Cellino, Akinori Saito, K. Katahira, P. Gorodetzky, J. Sledd, J. S. Kim, O. Martinez, Domenico Finco, M. D. Rodríguez Frías, N. Tajima, J. F. Valdés-Galicia, K. Asano, T. Yamamoto, G. Siemieniec-Oziȩbło, V. S. Morozenko, B. A. Khrenov, F. Sarazin, H. Miyamoto, G. Medina-Tanco, Ovidiu Vaduvescu, P. Baragatti, Y. Yamamoto, M. Lacombe, Claudio Cassardo, H. H. Silva Lopez, Hiroyuki Sagawa, Y. Karadzhov, S. Csorna, H. M. Shimizu, T. Paul, F. Dulucq, C. Tenzer, J. Geary, Mitsuteru Sato, S. W. Kim, A. Marini, R. Young, N. De Simone, Francesco Fenu, Y. Itow, R. Matev, A. Ebersoldt, Lech Wiktor Piotrowski, Toshikazu Ebisuzaki, H. W. Park, D. Allard, G. Modestino, M. Ricci, A. Dell’Oro, E. Kuznetsov, H. Tokuno, M. Suzuki, S. Yoshida, M. Sanz Palomino, M. E. Bertaina, J. Watanabe, P. Galeotti, Maxim Gonchar, T. Sugiyama, Y. Kurihara, M. Nagata, K. Tsuno, J. Błȩcki, T. Shibata, Alfonso Monaco, M. Takeda, Dmitry V. Naumov, H. Lim, M. C. Maccarone, T. Nakamura, G. Giraudo, Gali Garipov, T. Kajino, F. Tajima, F. Ronga, I. Kreykenbohm, T. Mernik, M. D. Sabau, T. Batsch, Ke Fang, M. Serra, D. Ikeda, N. Inoue, M. Putis, A. Sobey, N. Tone, I. Kaneko, B. Szabelska, G. Catalano, K. Higashide, C. Lachaud, M. J. Christl, I. Fernández-Gómez, F. Cafagna, S. Dagoret-Campagne, J. Yang, D. Cline, A. Haungs, L. Tkachev, M. Nagano Murakami, A. Kusenko, T. J. Weiler, J. N. Albert, M. Dupieux, Thomas Schanz, F. Guarino, S. Sánchez, Livio Conti, A. Anzalone, A. Zuccaro Marchi, A. A. Berlind, Jörn Wilms, Silvia Ferrarese, O. A. Saprykin, M. Yu. Zotov, V. Connaughton, Y. Kawasaki, Susana Briz, M. Flamini, Y. Takizawa, C. Blaksley, L. Wiencke, J. Szabelski, Y. Mizumoto, S. Nagataki, J. Blümer, G. Sáez-Cano, S. Falk, P. L. Biermann, I. Rusinov, K. Słomińska, A. Neronov, Z. Włodarczyk, D. Kolev, G. Gelmini, Simona Toscano, S. Ogio, H. Ikeda, L. Villaseñor, D. Maravilla, K. Mannheim, Frederic Trillaud, B. Mot, Yukihiro Takahashi, Marco Casolino, Claudio Fornaro, Adams, J. H., Ahmad, S., Albert, J. N., Allard, D., Anchordoqui, L., Andreev, V., Anzalone, A., Arai, Y., Asano, K., Ave Pernas, M., Baragatti, P., Barrillon, P., Batsch, T., Bayer, J., Bechini, R., Belenguer, T., Bellotti, R., Belov, K., Berlind, A. A., Bertaina, M., Biermann, P. L., Biktemerova, S., Blaksley, C., Blanc, N., Błȩcki, J., Blin Bondil, S., Blümer, J., Bobik, P., Bogomilov, M., Bonamente, M., Briggs, M. S., Briz, S., Bruno, A., Cafagna, F., Campana, D., Capdevielle, J. N., Caruso, R., Casolino, M., Cassardo, C., Castellinic, G., Catalano, C., Catalano, G., Cellino, A., Chikawa, M., Christl, M. J., Cline, D., Connaughton, V., Conti, L., Cordero, G., Crawford, H. J., Cremonini, R., Csorna, S., Dagoret Campagne, S., de Castro, A. J., De Donato, C., de la Taille, C., De Santis, C., del Peral, L., Dell’Oro, A., De Simone, N., Di Martino, M., Distratis, G., Dulucq, F., Dupieux, M., Ebersoldt, A., Ebisuzaki, T., Engel, R., Falk, S., Fang, K., Fenu, F., Fernández Gómez, I., Ferrarese, S., Finco, D., Flamini, M., Fornaro, C., Franceschi, A., Fujimoto, J., Fukushima, M., Galeotti, P., Garipov, G., Geary, J., Gelmini, G., Giraudo, G., Gonchar, M., González Alvarado, C., Gorodetzky, P., Guarino, Fausto, Guzmán, A., Hachisu, Y., Harlov, B., Haungs, A., Hernández Carretero, J., Higashide, K., Ikeda, D., Ikeda, H., Inoue, N., Inoue, S., Insolia, A., Isgro', Francesco, Itow, Y., Joven, E., Judd, E. G., Jung, A., Kajino, F., Kajino, T., Kaneko, I., Karadzhov, Y., Karczmarczyk, J., Karus, M., Katahira, K., Kawai, K., Kawasaki, Y., Keilhauer, B., Khrenov, B. A., Kim, J. S., Kim, S. W., Kleifges, M., Klimov, P. A., Kolev, D., Kreykenbohm, I., Kudela, K., Kurihara, Y., Kusenko, A., Kuznetsov, E., Lacombe, M., Lachaud, C., Lee, J., Licandro, J., Lim, H., López, F., Maccarone, M. C., Mannheim, K., Maravilla, D., Marcelli, L., Marini, A., Martinez, O., Masciantonio, G., Mase, K., Matev, R., Medina Tanco, G., Mernik, T., Miyamoto, H., Miyazaki, Y., Mizumoto, Y., Modestino, G., Monaco, A., Monnier Ragaigne, D., Morales de los Ríos, J. A., Moretto, C., Morozenko, V. S., Mot, B., Murakami, T., Murakami, M. Nagano, Nagata, M., Nagataki, S., Nakamura, T., Napolitano, T., Naumov, D., Nava, R., Neronov, A., Nomoto, K., Nonaka, T., Ogawa, T., Ogio, S., Ohmori, H., Olinto, A. V., Orleański, P., Osteria, G., Panasyuk, M. I., Parizot, E., Park, I. H., Park, H. W., Pastircak, B., Patzak, T., Paul, T., Pennypacker, C., Perez Cano, S., Peter, T., Picozza, P., Pierog, T., Piotrowski, L. W., Piraino, S., Plebaniak, Z., Pollini, A., Prat, P., Prévôt, G., Prieto, H., Putis, M., Reardon, P., Reyes, M., Ricci, M., Rodríguez, I., Rodríguez Frías, M. D., Ronga, F., Roth, M., Rothkaehl, H., Roudil, G., Rusinov, I., Rybczyński, M., Sabau, M. D., Sáez Cano, G., Sagawa, H., Saito, A., Sakaki, N., Sakata, M., Salazar, H., Sánchez, S., Santangelo, A., Santiago Crúz, L., Sanz Palomino, M., Saprykin, O., Sarazin, F., Sato, H., Sato, M., Schanz, T., Schieler, H., Scotti, V., Segreto, A., Selmane, S., Semikoz, D., Serra, M., Sharakin, S., Shibata, T., Shimizu, H. M., Shinozaki, K., Shirahama, T., Siemieniec Oziȩbło, G., Silva López, H. H., Sledd, J., Słomińska, K., Sobey, A., Sugiyama, T., Supanitsky, D., Suzuki, M., Szabelska, B., Szabelski, J., Tajima, F., Tajima, N., Tajima, T., Takahashi, Y., Takami, H., Takeda, M., Takizawa, Y., Tenzer, C., Tibolla, O., Tkachev, L., Tokuno, H., Tomida, T., Tone, N., Toscano, S., Trillaud, F., Tsenov, R., Tsunesada, Y., Tsuno, K., Tymieniecka, T., Uchihori, Y., Unger, M., Vaduvescu, O., Valdés Galicia, J. F., Vallania, P., Valore, Laura, Vankova, G., Vigorito, C., Villaseñor, L., von Ballmoos, P., Wada, S., Watanabe, J., Watanabe, S., Watts, J., Weber, M., Weiler, T. J., Wibig, T., Wiencke, L., Wille, M., Wilms, J., Włodarczyk, Z., Yamamoto, T., Yamamoto, Y., Yang, J., Yano, H., Yashin, I. V., Yonetoku, D., Yoshida, K., Yoshida, S., Young, R., Zotov, M. Y. u., and Zuccaro Marchi, A.
- Subjects
Ciencias Físicas ,Astrophysics::High Energy Astrophysical Phenomena ,Cosmic ray ,law.invention ,Telescope ,Optics ,cosmic rays ,law ,International Space Station ,Cosmic rays ,Physics ,International space station ,UHECR ,Astronomy and Astrophysics ,Space and Planetary Science ,business.industry ,Detector ,Astrophysics::Instrumentation and Methods for Astrophysics ,Astronomy ,Celestial sphere ,Astronomy and Astrophysic ,Astronomía ,Refracting telescope ,Focal surface ,business ,Event (particle physics) ,CIENCIAS NATURALES Y EXACTAS - Abstract
In this paper we describe the main characteristics of the JEM-EUSO instrument. The Extreme Universe Space Observatory on the Japanese Experiment Module (JEM-EUSO) of the International Space Station (ISS) will observe Ultra High-Energy Cosmic Rays (UHECR) from space. It will detect UV-light of Extensive Air Showers (EAS) produced by UHECRs traversing the Earth?s atmosphere. For each event, the detector will determine the energy, arrival direction and the type of the primary particle. The advantage of a space-borne detector resides in the largefield of view, using a target volume of about 10 12 tons of atmosphere, far greater than what is achievable from ground. Another advantage is a nearly uniform sampling of the whole celestial sphere. The corresponding increase in statistics will help to clarify the origin and sources of UHECRs and characterize the environment traversed during their production and propagation. JEM-EUSO is a 1.1 ton refractor telescope using an optics of 2.5 m diameter Fresnel lenses to focus the UV-light from EAS on a focal surface composed of about 5000 multi-anode photomultipliers, for a total of 3x10^5 channels. A multi-layer parallel architecture handles front-end acquisition, selecting and storing valid triggers. Each processing level filters the events with increasingly complex algorithms using FPGAs and DSPs to reject spurious events and reduce thedata rate to a value compatible with downlink constraints. Fil: Adams, J. H.. University of Alabama in Huntsville; Estados Unidos Fil: Ahmad, S.. Ecole Polytechnique; Francia Fil: Albert, J. N.. Univ Paris-Sud; Francia Fil: Allard, D.. Univ Paris Diderot; Francia Fil: Anchordoqui, L.. University of Wisconsin-Milwaukee; Estados Unidos Fil: Andreev, V.. University of California; Estados Unidos Fil: Anzalone, A.. Istituto di Astrofisica Spaziale e Fisica Cosmica di Palermo; Italia Fil: Arai, Y.. High Energy Accelerator Research Organization (KEK); Japón Fil: Asano, K.. Tokyo Institute of Technology; Japón Fil: Ave Pernas, M.. Universidad de Alcala; España Fil: Baragatti, P.. UTIU, Dipartimento di Ingegneria; Italia Fil: Barrillon, P.. Univ Paris-Sud; Francia Fil: Batsch, T.. National Centre for Nuclear Research; Polonia Fil: Bayer, J.. University of Tubingen; Alemania Fil: Bechini, R.. Istituto Nazionale di Fisica Nucleare; Italia Fil: Belenguer, T.. Instituto Nacional de Tecnica Aeroespacial (INTA); España Fil: Bellotti, R.. Istituto Nazionale di Fisica Nucleare; Italia Fil: Belov, K.. University of California; Estados Unidos Fil: Berlind, A. A.. Vanderbilt University; Estados Unidos Fil: Bertaina, M.. Istituto Nazionale di Fisica Nucleare; Italia Fil: Biermann, P. L.. Karlsruhe Institute of Technology (KIT); Alemania Fil: Biktemerova, S.. Joint Institute for Nuclear Research,; Rusia Fil: Blaksley, C.. Univ Paris Diderot; Francia Fil: Blanc, N.. Swiss Center for Electronics and Microtechnology (CSEM); Suiza Fil: Blecki, J.. Space Research Centre of the Polish Academy of Sciences (CBK); Polonia Fil: Blin,Bondil, S.. Ecole Polytechnique; Francia Fil: Blumer, J.. Karlsruhe Institute of Technology (KIT),; Alemania Fil: Bobik, P.. Institute of Experimental Physics; Eslovaquia Fil: Bogomilov, M.. University of Sofia; Bulgaria Fil: Supanitsky, Alberto Daniel. Consejo Nacional de Investigaciónes Científicas y Técnicas. Oficina de Coordinación Administrativa Ciudad Universitaria. Instituto de Astronomía y Física del Espacio. - Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales. Instituto de Astronomía y Física del Espacio; Argentina Fil: Casolino, Marco. RIKEN; Japón Fil: Kajino, Fumiyoshi. National Astronomical Observatory; Japón Fil: Piotrowski, Lech Wiktor. RIKEN; Japón Fil: The JEM-EUSO Collaboration.
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- 2015
126. Influence of ionic environment on the process of adsorption of heavy metal ions on magnetic iron oxides
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Korus, Irena, Bobik, Magdalena, and Bąk, Klaudia
- Abstract
Magnetic iron oxides, mainly magnetite Fe3O4and maghemite Y—Fe2O3, are seen as cheap, effective and convenient to use adsorbent of impurities such as heavy metals or dyes. The paper presents the influence of selected ions: inorganic monovalent and multivalent anions (NO3, Cl , SOy, PO3 ), organic anions, including complexing agents (Cl I.COO , EDTA) and monovalent and bivalent metal cations (Ca2+, Na+) on the separation of Cu(II), Zn(II), Ni(II), Cd(II), Pb(II), Cr(III) and Cr(VI) ions from solutions, using unmodified magnetite nanoparticles (M_NPs) and magnetite modified with poly(sodium acrylate) (M/PSA_NPs). The adsorption process was carried out at two pH values (5 and 6 for Cu(II), Zn(II), Ni(II), Cd(II) and 4 and 5 for Pb(II), Cr(III) and Cr(VI) ions) and at the concentration of the accompanying ion 10 times higher than the metal concentration. The reference test was carried out without the addition of accompanying salts. It was found that the increase in pH and the use of M/PSA_NPs adsorbent containing dissociated carboxylate groups -COO contributed to the increase in the degree of separation of all tested metals except for the anionic Cr(VI) form. Under the experimental conditions, inorganic monovalent anions did not show any significant effect on the process efficiency, whereas multivalent anions, especially PO(, increased the degree of separation of Cu(II), Zn(II), Ni(II) and Cd(II), which suggests that these anions may participate in the process of bonding metal cations with magnetite. A similar effect was observed for Pb(II) and Cr(III) cations using unmodified magnetite and lower pH value. The presence of a strong complexing agent (EDTA) significantly decreased the efficiency of cationic metal forms separation. The degree of this decrease depended on the type of metal and the conditions of adsorption. Cr(VI) anions were separated to a greater extent using unmodified magnetite. The presence of versenate (EDTA), phosphate and sulfate ions caused a decrease in the efficiency of the process, which may be explained by the fact that these multivalent anions compete with chromate ions in the adsorption process.
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- 2020
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127. Evolving BAFF targeted therapies for preventing acute myocardial infarctions and ischemic strokes
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Kyaw, Tin, Toh, Ban-Hock, and Bobik, Alex
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- 2020
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128. Long-Term Variations of Geomagnetic Rigidity Cutoffs
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K. Kudela and P. Bobik
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Physics ,Earth's magnetic field ,Rigidity (electromagnetism) ,Space and Planetary Science ,Astrophysics::High Energy Astrophysical Phenomena ,Computation ,Contour line ,Gauss ,Cutoff ,Astronomy and Astrophysics ,Cosmic ray ,Geodesy - Abstract
Using trajectory calculations of cosmic rays in the geomagnetic field, the changes of vertical cutoff rigidities in the past are discussed. The computations are done for selected positions at the Earth’s surface using the IGRF model data for 1900–2000. The contour maps of vertical cutoff rigidities using the set of ten Gauss coefficients for the period of years between 0 and 1600 are obtained. The trends in long-term variability of cutoffs at different positions on the Earth’s surface are described.
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- 2004
129. Aquinas on Being and Essence : A Translation and Interpretation
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BOBIK, JOSEPH, A Translation and Interpretation by and BOBIK, JOSEPH
- Published
- 1988
130. Cosmic Rays in the Earth Magnetosphere: the importance of the External Field models in trajectory reconstruction with AMS-02 data
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G. La Vacca, Mauro Tacconi, S. Pensotti, Massimo Gervasi, P. Bobik, S. Delia Torre, Davide Rozza, P. G. Rancoita, Matteo Boschini, M. Mallamaci, Karel Kudela, D. Grandi, Bobik, P, Boschini, M, Delia Torre, S, Gervasi, M, Grandi, D, Kudela, K, LA VACCA, G, Mallamaci, M, Pensotti, S, Rancoita, P, Rozza, D, and Tacconi, M
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Physics ,Proton ,Field (physics) ,FIS/06 - FISICA PER IL SISTEMA TERRA E PER IL MEZZO CIRCUMTERRESTRE ,Magnetosphere ,Boundary (topology) ,Cosmic ray ,Electron ,Geodesy ,Computational physics ,FIS/05 - ASTRONOMIA E ASTROFISICA ,Physics::Space Physics ,Trajectory ,Magnetopause ,Earth magnetosphere, particle backtracing - Abstract
We developed a backtracing code for Cosmic Rays trajectory reconstruction in the Earth Magnetosphere with last models of Internal (IGRF-11) and External (Tsyganenko 1996 and 2005) field components. Particles can be reconstructed, in case of allowed trajectory, as Primary Cosmic Rays if they reach the outer boundary (magnetopause) or, in case of forbidden trajectory, as Secondary particles if they go back to the inner boundary. During the last solar active period (2011 and 2012) we compared backtracing results on AMS-02 proton and electron data with and without external field model. Using TS05, specifically designed for storm events, we confirmed the well known East-West effect. Moreover we clearly found the day night effect related to the asymmetric shape of the Magnetosphere if considering the External Field, in comparison with the Internal Field only.
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- 2014
131. Sensitivity of a neutron monitor to galactic cosmic rays
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G. A. Kovaltsov, H. Kananen, Karel Kudela, Ilya Usoskin, P. Bobik, and O. G. Gladysheva
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Physics ,Atmospheric Science ,Neutron monitor ,PAMELA detector ,Astrophysics::High Energy Astrophysical Phenomena ,Aerospace Engineering ,Astronomy and Astrophysics ,Cosmic ray ,Astrophysics::Cosmology and Extragalactic Astrophysics ,Astrophysics ,Yield function ,law.invention ,Interstellar medium ,Geophysics ,Rigidity (electromagnetism) ,Space and Planetary Science ,law ,General Earth and Planetary Sciences ,Ultra-high-energy cosmic ray - Abstract
We studied the sensitivity of a neutron monitor to Galactic cosmic rays depending on energy of cosmic ray particles in the interstellar medium. This is important for studying of the interstellar spectrum of cosmic rays and details of solar modulation by means of the world neutron monitor network. We calculated the expected response of a standard sea-level neutron monitor vs. energy of cosmic ray particles. First, we studied modulation of a monoenergetic flux of cosmic rays. Then the specific atmospheric yield function of a neutron monitor was applied to the calculated flux of cosmic rays at the Earth's orbit. The obtained response function, being convoluted with the model interstellar spectrum of cosmic rays, gives a maximum of neutron monitor sensitivity at around several GV of rigidity of cosmic ray particles. We performed calculations for weak (φ = 350 MV) and medium (φ = 750 MV) modulation strength. A normalisation of neutron monitor count rate is suggested which can give an experimental measure of the overall solar modulation of cosmic rays.
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- 2001
132. [Untitled]
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P. Bobik, Ilya Usoskin, Karel Kudela, O. G. Gladysheva, and H. Kananen
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Physics ,Neutron monitor ,Modulation ,Astrophysics::High Energy Astrophysical Phenomena ,Measure (physics) ,General Physics and Astronomy ,Flux ,Cosmic ray ,Astrophysics::Cosmology and Extragalactic Astrophysics ,Astrophysics - Abstract
We suggest a new approach to the normalisation of neutron monitor response to galactic cosmic rays. The reference normalisation count rate is the neutron monitor response to the model unmodulated flux of galactic cosmic rays. A comparison of the actually recorded neutron monitor count rate with the calculated normalisation count rate can provide one with an observationally obtained true-of-date integral measure of the current level of solar modulation of galactic cosmic rays.
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- 1999
133. Determination of fat in infant formula by robotic automated method
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Lee, Theresa W., Bobik, Emil, and Malone, William
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- 1989
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134. Timolol pharmacokinetics and effects on heart rate and blood pressure after acute and chronic administration
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Bobik, A., Jennings, G. L., Ashley, P., and Korner, P. I.
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- 1979
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135. Action of Propranolol on Arterial Pressure and on Cardiovascular Reflexes
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Korner, P. I., Anderson, W. P., Blombery, P. A., and Bobik, A.
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- 1976
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136. Performances of JEM-EUSO
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G. Sáez Cano, P. Bobik, F. Garino, K. Shinozaki, M. E. Bertaina, Francesco Fenu, T. Mernik, K. Higashide, A. Guzman, Andrea Santangelo, and G. A. Medina Tanco
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Physics ,High energy ,Meteorology ,Trigger rate ,business.industry ,media_common.quotation_subject ,QC1-999 ,Context (language use) ,Universe ,Atmosphere ,Aerospace engineering ,Baseline (configuration management) ,business ,Energy (signal processing) ,media_common - Abstract
In this paper we describe the requirements and the expected performances of JEM-EUSO. Designed as the first mission to explore the Ultra High Energy Universe from space, JEM-EUSO will monitor the earth's atmosphere at night to record the UV (300–400 nm) tracks generated by the Extensive Air Showers produced by Ultra High Energy primaries propagating in the atmosphere. After briefing summarizing the main aspects of the JEM-EUSO Instrument and mission baseline, we will present, in details, our studies of the expected trigger rate, the estimated exposure, as well as on the expected angular, energy, and Xmax resolution. Eventually, the obtained results will be discussed in the context of the scientific requirements of the mission.
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- 2013
137. Heliosphere Dimension and Cosmic Ray Modulation
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D. Grandi, S. Pensotti, C. Consolandi, Karel Kudela, F. Noventa, P. Bobik, P. G. Rancoita, Davide Rozza, Massimo Gervasi, S. Della Torre, and Matteo Boschini
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Physics ,Earth and Planetary Astrophysics (astro-ph.EP) ,Monte Carlo method ,FOS: Physical sciences ,Cosmic ray ,Radius ,Computational physics ,Astrophysics - Solar and Stellar Astrophysics ,Dimension (vector space) ,Modulation ,Physics::Space Physics ,Astrophysics::Solar and Stellar Astrophysics ,Astrophysics::Earth and Planetary Astrophysics ,Diffusion (business) ,Observation data ,Heliosphere ,Solar and Stellar Astrophysics (astro-ph.SR) ,Astrophysics - Earth and Planetary Astrophysics - Abstract
The differential intensities of Cosmic Rays at Earth were calculated using a 2D stochastic Montecarlo diffusion code and compared with observation data. We evaluated the effect of stretched and compressed heliospheres on the Cosmic Ray intensities at the Earth. This was studied introducing a dependence of the diffusion parameter on the heliospherical size. Then, we found that the optimum value of the heliospherical radius better accounting for experimental data. We also found that the obtained values depends on solar activity. Our results are compatible with Voyager observations and with models of heliospherical size modulation., Comment: To appear on the Proceedings of the 13th ICATPP Conference on Astroparticle, Particle, Space Physics and Detectors for Physics Applications, Villa Olmo (Como, Italy), 3-7 October, 2011, to be published by World Scientific, Singapore (2012)
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- 2011
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138. ON THE RELATIONS OF COSMIC RAYS TO SPACE WEATHER STUDIES
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P. Bobik and K. Kudela
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Environmental science ,Astronomy ,Cosmic ray ,Space weather ,Space environment - Published
- 2010
139. Proton and antiproton modulation in the heliosphere for different solar conditions and AMS-02 measurements prediction
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P. Bobik, D. Grandi, Karel Kudela, S. Pensotti, C. Consolandi, Massimo Gervasi, S. Della Torre, Matteo Boschini, P. G. Rancoita, Giani, S, Leroy, C, Rancoita, PG, Bobik, P, Boschini, M, Consolandi, C, Della Torre, S, Gervasi, M, Grandi, D, Kudela, K, Pensotti, S, and Rancoita, P
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Physics ,Earth and Planetary Astrophysics (astro-ph.EP) ,Antiparticle ,Proton ,Astrophysics::High Energy Astrophysical Phenomena ,Heliosphere, Cosmic Rays, Solar Magnetic Field ,Flux ,FOS: Physical sciences ,Cosmic ray ,Galaxy ,Nuclear physics ,FIS/05 - ASTRONOMIA E ASTROFISICA ,Antiproton ,Physics::Space Physics ,Adiabatic process ,Heliosphere ,Astrophysics - Earth and Planetary Astrophysics - Abstract
Galactic Cosmic Rays (GCRs) are mainly protons confined in the galactic magnetic field to form an isotropic flux inside the galaxy. Before reaching the Earth orbit they enter the Heliosphere and undergo diffusion, convection, magnetic drift and adiabatic energy loss. The result is a reduction of particles flux at low energy (below 10 GeV), called solar modulation. We realized a quasi time-dependent 2D Stochastic Simulation of Solar Modulation that is able to reproduce CR spectra once known the Local Interstellar Spectrum (LIS). We were able to estimate the different behaviors associated to the polarity dependence of the Heliospheric modulation for particles as well as for antiparticles. We show a good agreement with the antiproton/proton ratio measured by AMS-01, Pamela, BESS, Heat and Caprice and we performed a prediction for the AMS-02 Experiment.
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- 2010
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140. Proton Modulation in the Heliosphere for Different Solar Conditions and Prediction for AMS-02
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G. Boella, P. Bobik, Pier-Giorgio Rancoita, Matteo Boschini, Massimo Gervasi, Karel Kudela, S. Della Torre, E. Memola, Mauro Tacconi, S. Pensotti, D. Grandi, C. Consolandi, Giani, S, Leroy, C, Rancoita, PG, Bobik, P, Boella, G, Boschini, M, Consolandi, C, Della Torre, S, Gervasi, M, Grandi, D, Kudela, K, Memola, E, Pensotti, S, Rancoita, P, and Tacconi, M
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Physics ,Earth and Planetary Astrophysics (astro-ph.EP) ,Proton ,Astrophysics::High Energy Astrophysical Phenomena ,Heliosphere, Cosmic Rays, Solar Magnetic Field ,Interplanetary medium ,FOS: Physical sciences ,Cosmic ray ,Spectral line ,Computational physics ,Interstellar medium ,Acceleration ,FIS/05 - ASTRONOMIA E ASTROFISICA ,Modulation ,Physics::Space Physics ,Astrophysics::Earth and Planetary Astrophysics ,Heliosphere ,Astrophysics - Earth and Planetary Astrophysics - Abstract
Spectra of Galactic Cosmic Rays (GCRs) measured at the Earth are the combination of several processes: sources production and acceleration, propagation in the interstellar medium and propagation in the heliosphere. Inside the solar cavity the flux of GCRs is reduced due to the solar modulation, the interaction which they have with the interplanetary medium. We realized a 2D stochastic simulation of solar modulation to reproduce CR spectra at the Earth, and evaluated the importance in our results of the Local Interstellar Spectrum (LIS) model and its agreement with data at high energy. We show a good agreement between our model and the data taken by AMS-01 and BESS experiments during periods with different solar activity conditions. Furthermore we made a prediction for the flux which will be measured by AMS-02 experiment., Comment: Accepted for publication in the Proceedings of the ICATPP Conference on Cosmic Rays for Particle and Astroparticle Physics, Villa Olmo (Como, Italy), 7-8 October, 2010, to be published by World Scientific (Singapore)
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- 2010
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141. Low Tregs: A targetable risk factor for life‐threatening cardiovascular complications after major noncardiac surgery
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Kyaw, Tin and Bobik, Alex
- Abstract
Discussion on Tregs that have anti‐inflammatory and anti‐atherogenic properties as an ideal therapeutic target to reduce fatal cardiovascular deaths following major noncardiac surgery.
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- 2020
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142. Electrophilic reactions of halides of group vi elements. 7. Reactions of allylbenzene and allyl phenyl ether with selenium tetrahalides
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Migalina, Yu. V., Galla-Bobik, S. V., Khripak, S. M., and Staninets, V. I.
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- 1982
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143. Follicular B Cells Promote Atherosclerosis via T Cell–Mediated Differentiation Into Plasma Cells and Secreting Pathogenic Immunoglobulin G
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Tay, Christopher, Liu, Yu-Han, Kanellakis, Peter, Kallies, Axel, Li, Yi, Cao, Anh, Hosseini, Hamid, Tipping, Peter, Toh, Ban-Hock, Bobik, Alex, and Kyaw, Tin
- Abstract
Supplemental Digital Content is available in the text.
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- 2018
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144. SYSTEMATIC INVESTIGATION OF SOLAR MODULATION OF GALACTIC PROTONS FOR SOLAR CYCLE 23 USING A MONTE CARLO APPROACH WITH PARTICLE DRIFT EFFECTS AND LATITUDINAL DEPENDENCE
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D. Grandi, Massimo Gervasi, G. Boella, Mauro Tacconi, C. Consolandi, Pier-Giorgio Rancoita, Karel Kudela, S. Pensotti, P. Bobik, S. Della Torre, Matteo Boschini, Bobik, P, Boella, G, Boschini, M, Consolandi, C, Della Torre, S, Gervasi, M, Grandi, D, Kudela, K, Pensotti, S, Rancoita, P, and Tacconi, M
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Earth and Planetary Astrophysics (astro-ph.EP) ,Physics ,COSMIC cancer database ,Astrophysics::High Energy Astrophysical Phenomena ,Monte Carlo method ,Fast scanning ,FOS: Physical sciences ,Solar cycle 23 ,Astronomy and Astrophysics ,Cosmic ray ,Astrophysics ,Particle drift ,Spectral line ,FIS/05 - ASTRONOMIA E ASTROFISICA ,Astrophysics - Solar and Stellar Astrophysics ,Space and Planetary Science ,Physics::Space Physics ,Astrophysics::Solar and Stellar Astrophysics ,cosmic rays, solar–terrestrial relations, solar wind, Sun: heliosphere ,Solar and Stellar Astrophysics (astro-ph.SR) ,Heliosphere ,Astrophysics - Earth and Planetary Astrophysics - Abstract
A propagation model of galactic cosmic protons through the Heliosphere was implemented using a 2-D Monte Carlo approach to determine the differential intensities of protons during the solar cycle 23. The model includes the effects due to the variation of solar activity during the propagation of cosmic rays from the boundary of the heliopause down to Earth's position. Drift effects are also accounted for. The simulated spectra were found in agreement with those obtained with experimental observations carried out by BESS, AMS and PAMELA collaborations. In addition, the modulated spectrum determined with the present code for the year 1995 exhibits the latitudinal gradient and equatorial southward offset minimum found by Ulysses fast scan in 1995., accepted for publication on The Astrophysical Journal
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- 2012
145. Obligatory Role for B Cells in the Development of Angiotensin II-Dependent Hypertension.
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Chan, Christopher T., Sobey, Christopher G., Lieu, Maggie, Ferens, Dorota, Kett, Michelle M., Diep, Henry, Hyun Ah Kim, Krishnan, Shalini M., Lewis, Caitlin V., Salimova, Ekaterina, Tipping, Peter, Vinh, Antony, Samuel, Chrishan S., Peter, Karlheinz, Guzik, Tomasz J., Kyaw, Tin S., Ban-Hock Toh, Bobik, Alexander, Drummond, Grant R., and Kim, Hyun Ah
- Abstract
Clinical hypertension is associated with raised serum IgG antibodies. However, whether antibodies are causative agents in hypertension remains unknown. We investigated whether hypertension in mice is associated with B-cell activation and IgG production and moreover whether B-cell/IgG deficiency affords protection against hypertension and vascular remodeling. Angiotensin II (Ang II) infusion (0.7 mg/kg per day; 28 days) was associated with (1) a 25% increase in the proportion of splenic B cells expressing the activation marker CD86, (2) an 80% increase in splenic plasma cell numbers, (3) a 500% increase in circulating IgG, and (4) marked IgG accumulation in the aortic adventitia. In B-cell-activating factor receptor-deficient (BAFF-R(-/-)) mice, which lack mature B cells, there was no evidence of Ang II-induced increases in serum IgG. Furthermore, the hypertensive response to Ang II was attenuated in BAFF-R(-/-) (Δ30±4 mm Hg) relative to wild-type (Δ41±5 mm Hg) mice, and this response was rescued by B-cell transfer. BAFF-R(-/-) mice displayed reduced IgG accumulation in the aorta, which was associated with 80% fewer aortic macrophages and a 70% reduction in transforming growth factor-β expression. BAFF-R(-/-) mice were also protected from Ang II-induced collagen deposition and aortic stiffening (assessed by pulse wave velocity analysis). Finally, like BAFF-R deficiency, pharmacological depletion of B cells with an anti-CD20 antibody attenuated Ang II-induced hypertension by ≈35%. Hence, these studies demonstrate that B cells/IgGs are crucial for the development of Ang II-induced hypertension and vessel remodeling in mice. Thus, B-cell-targeted therapies-currently used for autoimmune diseases-may hold promise as future treatments for hypertension. [ABSTRACT FROM AUTHOR]
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- 2015
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146. Blocking IL-6 trans-Signaling Prevents High-Fat Diet-Induced Adipose Tissue Macrophage Recruitment but Does Not Improve Insulin Resistance.
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Kraakman, Michael J., Kammoun, Helene L., Allen, Tamara L., Deswaerte, Virginie, Henstridge, Darren C., Estevez, Emma, Matthews, Vance B., Neill, Bronwyn, White, David A., Murphy, Andrew J., Peijs, Lone, Yang, Christine, Risis, Steve, Bruce, Clinton R., Du, Xiao-Jun, Bobik, Alex, Lee-Young, Robert S., Kingwell, Bronwyn A., Vasanthakumar, Ajithkumar, and Shi, Wei
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Summary Interleukin-6 (IL-6) plays a paradoxical role in inflammation and metabolism. The pro-inflammatory effects of IL-6 are mediated via IL-6 “ trans -signaling,” a process where the soluble form of the IL-6 receptor (sIL-6R) binds IL-6 and activates signaling in inflammatory cells that express the gp130 but not the IL-6 receptor. Here we show that trans -signaling recruits macrophages into adipose tissue (ATM). Moreover, blocking trans -signaling with soluble gp130Fc protein prevents high-fat diet (HFD)-induced ATM accumulation, but does not improve insulin action. Importantly, however, blockade of IL-6 trans -signaling, unlike complete ablation of IL-6 signaling, does not exacerbate obesity-induced weight gain, liver steatosis, or insulin resistance. Our data identify the sIL-6R as a critical chemotactic signal for ATM recruitment and suggest that selectively blocking IL-6 trans -signaling may be a more favorable treatment option for inflammatory diseases, compared with current treatments that completely block the action of IL-6 and negatively impact upon metabolic homeostasis. [ABSTRACT FROM AUTHOR]
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- 2015
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147. Buprenorphine added to bupivacaine prolongs femoral nerve block duration and improves analgesia in patients undergoing primary total knee arthroplasty-a randomised prospective double-blind study.
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Kosel, Juliusz, Bobik, Piotr, and Siemitkowski, Andrzej
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- 2015
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148. Atherosclerotic Plaque Rupture
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Chen, Yung-Chih, Huang, Alex L., Kyaw, Tin S., Bobik, Alex, and Peter, Karlheinz
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- 2016
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149. On the forward‐backward‐in‐time approach for Monte Carlo solution of Parker's transport equation: One‐dimensional case
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Bobik, P., Boschini, M. J., Della Torre, S., Gervasi, M., Grandi, D., La Vacca, G., Pensotti, S., Putis, M., Rancoita, P. G., Rozza, D., Tacconi, M., and Zannoni, M.
- Abstract
The cosmic rays propagation inside the heliosphere is well described by a transport equation introduced by Parker in 1965. To solve this equation, several approaches were followed in the past. Recently, a Monte Carlo approach became widely used in force of its advantages with respect to other numerical methods. In this approach the transport equation is associated to a fully equivalent set of stochastic differential equations (SDE). This set is used to describe the stochastic path of quasi‐particle from a source, e.g., the interstellar space, to a specific target, e.g., a detector at Earth. We present a comparison of forward‐in‐time and backward‐in‐time methods to solve the cosmic rays transport equation in the heliosphere. The Parker equation and the related set of SDE in the several formulations are treated in this paper. For the sake of clarity, this work is focused on the one‐dimensional solutions. Results were compared with an alternative numerical solution, namely, Crank‐Nicolson method, specifically developed for the case under study. The methods presented are fully consistent each others for energy greater than 400 MeV. The comparison between stochastic integrations and Crank‐Nicolson allows us to estimate the systematic uncertainties of Monte Carlo methods. The forward‐in‐time stochastic integrations method showed a systematic uncertainty <5%, while backward‐in‐time stochastic integrations method showed a systematic uncertainty <1% in the studied energy range. Quantitative comparison of backward‐forward‐in‐time cosmic rays transport Monte Carlo methodsEstimation of systematic error of both methods for spectra at 1 AU for energies above 1 GVBackward‐in‐time method is suited for predicting modulated spectra for high‐precision experiments
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- 2016
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150. HMGB1 binds to activated platelets via the receptor for advanced glycation end products and is present in platelet rich human coronary artery thrombi
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Ahrens, Ingo, Chen, Yung-Chih, Topcic, Danijal, Bode, Michael, Haenel, David, Hagemeyer, Christoph E., Seeba, Hannah, Duerschmied, Daniel, Bassler, Nicole, Jandeleit-Dahm, Karin A., Sweet, Matthew J., Agrotis, Alex, Bobik, Alex, and Peter, Karlheinz
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- 2015
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