199 results on '"Osorio, E. A."'
Search Results
2. Clinico-pathological predictors of clinical complete response in rectal cancer
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Mbanu, P., Osorio, E. Vasquez, Mistry, H., Malcomson, L., Yousif, S., Aznar, M., Kochhar, R., Van Herk, M., Renehan, A.G., and Saunders, M.P.
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- 2022
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3. Exploring the electron density in plasma induced by EUV radiation: II. Numerical studies in argon and hydrogen
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Astakhov, D. I., Goedheer, W. J., Lee, C. J., Ivanov, V. V., Krivtsun, V. M., Koshelev, K. N., Lopaev, D. V., van der Horst, R. M., Beckers, J., Osorio, E. A., and Bijkerk, F.
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Physics - Plasma Physics - Abstract
We used numerical modeling to study the evolution of EUV-induced plasmas in argon and hydrogen. The results of simulations were compared to the electron densities measured by microwave cavity resonance spectroscopy. It was found that the measured electron densities can be used to derive the integral amount of plasma in the cavity. However, in some regimes, the impact of the setup geometry, EUV spectrum, and EUV induced secondary emission should be taken into account. The influence of these parameters on the generated plasma and the measured electron density is discussed.
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- 2016
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4. Exploring the electron density in plasmas induced by extreme ultraviolet radiation in argon
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van der Horst, R. M., Beckers, J., Osorio, E. A., and Banine, V. Y.
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Physics - Plasma Physics - Abstract
The new generation of lithography tools use high energy EUV radiation which ionizes the present background gas due to photoionization. To predict and understand the long term impact on the highly delicate mirrors It is essential to characterize these kinds of EUV-induced plasmas. We measured the electron density evolution in argon gas during and just after irradiation by a short pulse of EUV light at 13.5 nm by applying microwave cavity resonance spectroscopy. Dependencies on EUV pulse energy and gas pressure have been explored over a range relevant for industrial applications. Our experimental results show that the maximum reached electron density depends linearly on pulse energy. A quadratic dependence - caused by photoionization and subsequent electron impact ionization by free electrons - is found from experiments where the gas pressure is varied. This is demonstrated by our theoretical estimates presented in this manuscript as well., Comment: submitted to J. Phys. D. 16 pages, 8 figures
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- 2015
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5. Comprehensive assessment of solid waste management of a highly urbanized city in Metro Manila, Philippines during the COVID-19 pandemic
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Osorio, E, primary, Bularan, L, additional, Tanchuling, M, additional, Ty, S, additional, Inocencio, B, additional, Lu, P, additional, Requejo, B, additional, and Caraan, L, additional
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- 2023
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6. Socio-behavioral assessment of household solid waste management: The case of Barangay Calicanto, Philippines
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Treyes, A C, primary, Osorio, E, additional, Tanchuling, M A, additional, Andal, M D, additional, Requejo, B, additional, Inocencio, B, additional, and Panopio, C, additional
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- 2023
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7. Integrated Database System with Spatial Information for Disaster Risk Management
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OSORIO, E. E. C., HAYAT, B., SHAH, B., CHOW, F., and KIM, K.-I.
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database ,geographic information systems ,terrain mapping ,software ,image processing ,Electrical engineering. Electronics. Nuclear engineering ,TK1-9971 ,Computer engineering. Computer hardware ,TK7885-7895 - Abstract
Despite availability of various image sources for specific areas, a new disaster management system is likely to be implemented by using only one of them. Thus, its applicability and extensibility are severely limited. In addition, real-time update for the disaster area is one of the crucial functions for search and rescue activities. To meet the aforementioned requirements, in this paper, we propose a new spatial data infrastructure by defining the methodological scheme for the raster information. The proposed system has four respective layers to reduce the management cost as well as provide a flexible architecture. In each layer, various open source software or standard technologies are employed to perform the given tasks. The experimental results reveal that the proposed scheme accommodates the requirements for disaster risk management and meets the performance requirements in an efficient way.
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- 2019
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8. Self-breaking in planar few-atom Au constrictions for nm-spaced electrodes
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O'Neill, K., Osorio, E. A., and van der Zant, H. S. J.
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Condensed Matter - Materials Science ,Condensed Matter - Mesoscale and Nanoscale Physics - Abstract
We present results on electromigrated Au nanojunctions broken near the conductance quantum $77.5 \mu$S. At room temperature we find that wires, initially narrowed by an actively-controlled electromigration technique down to a few conductance quanta, continue to narrow after removing the applied voltage. Separate electrodes form as mobile gold atoms continuously reconfigure the constriction. We find, from results obtained on over 300 samples, no evidence for gold cluster formation in junctions broken without an applied voltage, implying that gold clusters may be avoided by using this self-breaking technique., Comment: accepted in Applied physics letters
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- 2007
9. Hypoglycemic and antioxidant effect of Tai chi exercise training in older adults with metabolic syndrome
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Mendoza-Núñez VM, Arista-Ugalde TL, Rosado-Pérez J, Ruiz-Ramos M, and Santiago-Osorio E
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tai chi ,oxidative stress ,older subjects ,metabolic syndrome ,HbA1c ,Geriatrics ,RC952-954.6 - Abstract
Víctor Manuel Mendoza-Núñez,1 Taide Laurita Arista-Ugalde,1 Juana Rosado-Pérez,1 Mirna Ruiz-Ramos,1 Edelmiro Santiago-Osorio2 1Research Unit on Gerontology, FES Zaragoza, National Autonomous University of Mexico, Mexico City, Mexico; 2Hematopoiesis and Leukemia Laboratory, Research Unit on Cell Differentiation and Cancer, FES Zaragoza, National Autonomous University of Mexico, Mexico City, Mexico Introduction: The antioxidant and anti-inflammatory effects of Tai chi (TC) exercise training in healthy older adults has been demonstrated. However, there are no studies on this effect in older adults with metabolic syndrome (MetS).Purpose: The aim of this study was to determine the effect of TC exercise on oxidative stress and inflammatory markers in older adults with MetS.Methods: A quasi-experimental study was carried out with a sample of 110 older sedentary volunteers with clinical diagnoses of MetS: (i) a control group, n = 50, of individuals who do not participate in physical exercise, of which 37 fulfilled the entire study protocol, and (ii) an experimental group, n = 60, of subjects enrolled in a TC exercise training program (eight-form easy), 5 days a week for 6 months, in sessions of 50 min, under the supervision of a qualified instructor, of which 48 fulfilled the entire study protocol. We measured in both groups (pre- and post-intervention) the following cardiovascular parameters: resting heart rate (RHR), diastolic and systolic blood pressure (DBP and SBP), mean arterial pressure (MAP), RHR-SBP product, RHR-MAP product; glycosylated hemoglobin (HbA1c); oxidative stress markers (superoxide dismutase, total antioxidant status, thiobarbituric acid reacting substances, and oxidative stress score); and inflammation markers (TNF-α, IL-6, IL-8, and IL-10).Results: A statistically significant decrease in HbA1c concentration was observed in the TC group compared with the control group (p < 0.05). This group also showed a statistically significant increase in TAS and a decrease in the oxidative stress score (p < 0.05). We did not observe changes in the cardiovascular parameters (RHR, DBP, SBP, MAP, RHR-SBP product, and RHR-MAP product) in the TC experimental group compared to the control group.Conclusion: Our findings suggest that the practice of TC exercise has an antioxidative and hypoglycemic effect in the elderly with MetS. Keywords: Tai chi, oxidative stress, older subjects, metabolic syndrome, HbA1c
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- 2018
10. Analytic calculations and synthetic shapes for validation of quantitative contour comparison software.
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Boukerroui, D., Vasquez Osorio, E., Brunenberg, E.J.L., Gooding, M.J., Boukerroui, D., Vasquez Osorio, E., Brunenberg, E.J.L., and Gooding, M.J.
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01 april 2023, Item does not contain fulltext, A high level of variability in reported values was observed in a recent survey of contour similarity measures (CSMs) calculation tools. Such variations in the output measurements prevent meaningful comparison between studies. The purpose of this study was to develop a dataset with analytically calculated gold standard values to facilitate standardization and ensure accuracy of CSM implementations. The dataset was generated in the Digital Imaging and Communications in Medicine (DICOM) format. Both the dataset and the software used for its generation are made publicly available to encourage robust testing of CSM implementations for accuracy, improving consistency between different implementations.
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- 2023
11. Review and recommendations on deformable image registration uncertainties for radiotherapy applications
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(0000-0002-7468-835X) Nenoff, L., Amstutz, F., Murr, M., Archibald-Heeren, B., Fusella, M., Hussein, M., Lechner, W., Zhang, Y., Sharp, G., Vasquez Osorio, E., (0000-0002-7468-835X) Nenoff, L., Amstutz, F., Murr, M., Archibald-Heeren, B., Fusella, M., Hussein, M., Lechner, W., Zhang, Y., Sharp, G., and Vasquez Osorio, E.
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Deformable image registration (DIR) is a versatile tool used in many applications in radiotherapy (RT). DIR algorithms have been implemented in many commercial treatment planning systems providing accessible and easy-to-use solutions. However, the geometric uncertainty of DIR can be large and difficult to quantify, resulting in barriers to clinical practice. Currently, there is no agreement in the RT community on how to quantify these uncertainties and determine thresholds that distinguish a good DIR result from a poor one. This review summarises the current literature on sources of DIR uncertainties and their impact on RT applications. Recommendations are provided on how to handle these uncertainties for patient-specific use, commissioning, and research. Recommendations are also provided for developers and vendors to help users to understand DIR uncertainties and make the application of DIR in RT safer and more reliable.
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- 2023
12. Malnutrition-related parasite dissemination from the skin in visceral leishmaniasis is driven by PGE2-mediated amplification of CCR7-related trafficking of infected inflammatory monocytes
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Osorio, E. Yaneth, primary, Uscanga-Palomeque, Ashanti, additional, Patterson, Grace T., additional, Cordova, Erika, additional, Travi, Bruno L., additional, Soong, Lynn, additional, and Melby, Peter C., additional
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- 2023
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13. Double Staining with Fluorescent Tracers to Determine Myeloid Cell Migration of Leishmania-infected Cells from Mouse Skin to Lymphatic Tissues by Flow Cytometry
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Uscanga-Palomeque, Ashanti, primary, Osorio, E., additional, and Melby, Peter, additional
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- 2023
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14. Inflammatory stimuli alter bone marrow composition and compromise bone health in the malnourished host
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Osorio, E. Yaneth, primary, Gugala, Zbigniew, additional, Patterson, Grace T., additional, Palacios, Genesis, additional, Cordova, Erika, additional, Uscanga-Palomeque, Ashanti, additional, Travi, Bruno L., additional, and Melby, Peter C., additional
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- 2022
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15. The percentage of CD39+ monocytes is higher in pregnant COVID-19+ patients than in nonpregnant COVID-19+ patients
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Cérbulo-Vázquez, A., primary, García-Espinosa, M., additional, Briones-Garduño, J. C., additional, Arriaga-Pizano, L., additional, Ferat-Osorio, E., additional, Zavala-Barrios, B., additional, Cabrera-Rivera, G. L., additional, Miranda-Cruz, P., additional, García de la Rosa, M. T., additional, Prieto-Chávez, J. L., additional, Rivero-Arredondo, V., additional, Madera-Sandoval, R. L., additional, Cruz-Cruz, A., additional, Salazar-Rios, E., additional, Salazar-Rios, M. E., additional, Serrano-Molina, D., additional, De Lira-Barraza, R. C., additional, Villanueva-Compean, A. H., additional, Esquivel-Pineda, A., additional, Ramirez-Montes de Oca, R., additional, Caldiño-Soto, F., additional, Ramírez-García, L. A., additional, Flores-Padilla, G., additional, Moreno-Álvarez, O., additional, Guerrero-Avendaño, G. M. L., additional, and López-Macías, C., additional
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- 2022
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16. Multicenter comparison of measures for quantitative evaluation of contouring in radiotherapy
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Gooding, M.J., Boukerroui, D., Osorio, E. Vasquez, Monshouwer, R., Brunenberg, E.J.L., Gooding, M.J., Boukerroui, D., Osorio, E. Vasquez, Monshouwer, R., and Brunenberg, E.J.L.
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Item does not contain fulltext, BACKGROUND AND PURPOSE: A wide range of quantitative measures are available to facilitate clinical implementation of auto-contouring software, on-going Quality Assurance (QA) and interobserver contouring variation studies. This study aimed to assess the variation in output when applying different implementations of the measures to the same data in order to investigate how consistently such measures are defined and implemented in radiation oncology. MATERIALS AND METHODS: A survey was conducted to assess if there were any differences in definitions of contouring measures or their implementations that would lead to variation in reported results between institutions. This took two forms: a set of computed tomography (CT) image data with "Test" and "Reference" contours was distributed for participants to process using their preferred tools and report results, and a questionnaire regarding the definition of measures and their implementation was completed by the participants. RESULTS: Thirteen participants completed the survey and submitted results, with one commercial and twelve in-house solutions represented. Excluding outliers, variations of up to 50% in Dice Similarity Coefficient (DSC), 50% in 3D Hausdorff Distance (HD), and 200% in Average Distance (AD) were observed between the participant submitted results. Collaborative investigation with participants revealed a large number of bugs in implementation, confounding the understanding of intentional implementation choices. CONCLUSION: Care must be taken when comparing quantitative results between different studies. There is a need for a dataset with clearly defined measures and ground truth for validation of such tools prior to their use.
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- 2022
17. Hippocampal Sparing Radiotherapy in adults with Primary Brain Tumors: A comparative planning and dosimetric study using IMPT, IMRT and 3DCRT
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Aka, P, Taylor, R, Hugtenburg, R, Lambert, J, Powell, J, Bevolo, T, Gao, M, Gondi, V, Hartsell, W.H, Bolsi, A, Beer, J, Belosi, M.F, Siewert, D, Lomax, A.J, Weber, D.C, Huang, Y.J, Huang, C.C, Chao, P.J, Liu, C, Shang, H, Ding, X, Wang, Y, Mammar, H, Froelich, Sébastien, Alapetite, Claire, Bolle, Stéphanie, Calugaru, Valentin, Feuvret, Loic, Helfre, Sylvie, Champion, Laurence, Goudjil, Farid, Dendal, Remi, Engelholm, S.A, Munck Af Rosenschold, P, Kristensen, I, Smulders, B, Muhic, A, Alkner, S, Jacob, E, Engelholm, S, Aljabab, S, Lui, A, Wong, T, Liao, J, Laramore, G, Parvathaneni, U, Kharouta, M, Pidikiti, R, Jesseph, F, Smith, M, Dobbins, D, Mattson, D, Choi, S, Mansur, D, Machtay, M, Bhatt, A, Lütgendorf-Caucig, C, Dunavölgyi, R, Georg, P, Perpar, A, Fussl, C, Konstantinovic, R, Ulrike, M, Piero, F, Eugen, H, Vidal, M, Gerard, A, Barnel, C, Maneval, D, Herault, J, Claren, A, Doyen, J, Dendale, R, Toutee, A, Pasquie, I, Goudjil, F, Lumbroso Lerouic, L, Levy, C, Desjardins, L, Cassoux, N, Elisei, G, Pella, A, Calvi, G, Ricotti, R, Tagaste, B, Valvo, F, Ciocca, M, Via, R, Mastella, E, Baroni, G, Saotome, N, Yonai, S, Makishima, H, Hara, Y, Inaniwa, T, Sakama, M, Kanematsu, N, Tsuji, H, Furukawa, T, Shirai, T, Sauerwein, W, Finger, P.T, Gallie, B, Gavrylyuk, Y, Thariat, J, Salleron, J, Maschi, C, Fevrier, E, Caujolle, J.P, Hofverberg, P, Angellier, G, Peyrichon, M.L, Breneman, J, Esslinger, H, Pater, L, Vatner, R, Habrand, J.L, Stefan, D, Lesueur, P, Kao, W, Véla, A, Geffrelot, J, Tessonnier, T, Balosso, J, Mahé, M.A, Lim, P.S, Rompokos, V, Chang, Y.C, Royle, G, Gaze, M, Gains, J, Vennarini, S, Francesco, F, Rombi, B, Amichetti, M, Schwarz, M, Lorentini, S, Mee, T, Burnet, N.G, Crellin, A, Kirkby, N.F, Smith, E, Kirkby, K.J, Roggio, M, Buwenge, M, Melchionda, F, Ammendolia, I, Ronchi, L, Cammelli, S, Morganti, A.G, Youn, S.H, Kim, J.Y, Park, H.J, Shin, S.H, Lee, S.H, Hong, E.K, Czerska, K, Winczura, P, Wejs-Maternik, J, Blukis, A, Antonowicz-Szydlowska, M, Rucinski, A, Olko, P, Badzio, A, Kopec, R, Franceschini, D, Cozzi, L, De Rose, F, Meattini, I, Fogliata, A, Cozzi, S, Becherini, C, Tomatis, S, Livi, L, Scorsetti, M, Garda, A, Fattahi, S, Michel, A, Mutter, R, Yan, E, Park, S, Corbin, K, Giap, H, LAM, W.W, Geng, H, Tang, K.K, Lee, T.Y, Kong, C.W, Yang, B, Chiu, T.L, Cheung, K.Y, Yu, S.K, Ma, M, Gao, X, Zhao, Z, Zhao, B, Mullikin, T, Routman, D, Yu, J, Greco, K, Fagundes, M, Shan, J, Daniels, T, Rule, W, DeWees, T, Hu, Y, Bues, M, Sio, T, Liu, W, chenbin, L, yuehu, P, yuenan, W, Bai, Y, Gao, X.S, Zhao, Z.L, Ma, M.W, Ren, X.Y, Salem, A, Woolf, D, Aznar, M, Azadeh, A, Eccles, C, Charlwood, F, Faivre-Finn, C, Teoh, S, Fiorini, F, George, B, Vallis, K, Van den Heuvel, F, Huang, E.Y, Juang, P.J, Pan, S, Hawkins, M, Clarke, M, Lowe, M, Radhakrishna, G, Schaub, S, Bowen, S, Nyflot, M, Chapman, T, Apisarnthanarax, S, Vitek, P, Kubes, J, Vondracek, V, Vinakurau, S, Zamecnik, L, Vitolo, V, Barcellini, A, Brugnatelli, S, Cobianchi, L, Vanoli, A, Fossati, P, Facoetti, A, Dionigi, P, Orecchia, R, Iannalfi, A, Vischioni, B, Ronchi, S, D’Ippolito, E, Petrucci, R, Yamaguchi, H, Honda, M, Hamada, K, Todate, Y, Seto, I, Suzuki, M, Wada, H, Murakami, M, Yu, Z, Zheng, W, Lien-Chun, L, Zhengshan, H, Qing, Z, Jiade, L, Guoliang, J, Fiore, M.R, D'Ippolito, E, Fukumitsu, N, Hayakawa, T, Yamashita, T, Mima, M, Demizu, Y, Suzuki, T, Soejima, T, Hartsell, W, Collins, S, Casablanca, V, Mihalcik, S, Brennan, E, Van Nispen, A, Corbett, A, Mohammed, N, Lee, P, van Nispen, A, Liang, Y.S, Mein, S, Kopp, B, Choi, K, Haberer, T, Debus, J, Abdollahi, A, Mairani, A, Ogino, H, Iwata, H, Hashimoto, S, Nakajima, K, Hattori, Y, Nomura, K, Shibamoto, Y, Li, P, Wu, S, Deng, L, Zhang, G, Zhang, Q, Fu, S, Yang, Z, Zhang, Y, Sasaki, R, Okimoto, T, Akasaka, H, Miyawaki, D, Yoshida, K, Wang, T, Komatsu, S, Fukumoto, T, Shuang, W, Xin, C, zhengshan, H, Shen, F, Vorobyov, N, Andreev, G, Martynova, N, Lyubinsky, A, Kubasov, A, Chen, J, Ma, N, Lu, Y, Zhao, J, Shahnazi, K, Lu, J, Jiang, G, Mao, J, Walser, M, Bojaxhiu, B, Kawashiro, S, Tran, S, Pica, A, Bachtiary, B, Weber, D, Gaito, S, Abravan, A, Richardson, J, Colaco, R, Saunders, D, Brennan, B, Petersen, I, Ahmed, S, Laack, N, Mizoe, J.E, Iizumi, T, Minohara, S, Kusano, Y, Matsuzaki, Y, Tsuchida, K, Serizawa, I, Yoshida, D, Katoh, H, Sakurai, H, Tujii, H, Kim, T.H, Park, J.W, Bo Hyun, K, Hyunjung, K, Sung Ho, M, Sang Soo, K, Sang Myung, W, Young-Hwan, K, Woo Jin, L, Dae Yong, K, Hong, Z, Wang, Z, Koroulakis, A, Molitoris, J, Kaiser, A, Hanna, N, Jiang, Y, Regine, W, DeCesaris, C.M, Choi, J.I, Carr, S.R, Burrows, W.M, Regine, W.F, Simone, C.B, Aihara, T, Hiratsuka, J, Kamitani, N, Higashino, M, Kawata, R, Kumada, H, Ono, K, Chou, Y.C, Dippolito, E, Bonora, M, Alterio, D, Gandini, S, Jereczeck, B.A, Kelly, C, Dobeson, C, Iqbal, S, Chatterjee, S, Hague, C, Li, T, Lin, A, Lukens, J, Slevin, N, Thomson, D, van Herk, M, West, C, Teo, K, Jeans, E, Manzar, G, Patel, S, Ma, D, Lester, S, Foote, R, Friborg, J, Jensen, K, Hansen, C.R, Andersen, E, Andersen, M, Eriksen, J.G, Johansen, J, Overgaard, J, Grau, C, Dědečková, K, Vítek, P, Ondrová, B, Sláviková, S, Zapletalová, S, Zapletal, R, Vondráček, V, Rotnáglová, E, Kwanghyun, J, Woojin, L, Dongryul, O, Yong Chan, A, Paudel, N, Schmidt, S, Ruckman, M, Gans, S, Stauffer, M, Helenowski, I, Patel, U, Samant, S, Gentile, M, Damico, N, Yao, M, Shuja, M, Routman, D.M, Foote, R.L, Garces, Y.I, Neben-Wittich, M.A, Patel, S.H, McGee, L.A, Harmsen, W.S, Ma, D.J, Sommat, K, Tong, A.K.T, Hu, J, Ong, A.L.K, Wang, F, Sin, S.Y, Wee, T.S, Tan, W.K, Fong, K.W, Soong, Y.L, Wallace, N, Fredericks, S, Fitzgerald, T, Vernimmen, F, Petringa, G, Cirrone, P, Agosteo, S, Attili, A, Cammarata, F.P, Cuttone, G, Conte, V, La Tessa, C, Manti, L, Rosenfeld, A, Lojacono, P.A, Hennings, F, Fattori, G, Peroni, M, Lomax, A, Hrbacek, J, Nguyen, H.G, Bach Cuadra, M, Sznitman, R, Schalenbourg, A, Pflaeger, A, Weber, A, Seidel, S, Stark, R, Heufelder, J, Mailhot Vega, 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- Subjects
Biology: Biological Differences between Carbon, Proton and Photons Poster Discussion SessionsPTC58-0642 ,Physics: Absolute and Relative DosimetryPTC58-0180 ,Biology: Biology and Clinical InterfacePTC58-0685 ,Physics: Commissioning New FacilitiesPTC58-0385 ,Physics: 4D Treatment and DeliveryPTC58-0546 ,Clinics: EyePTC58-0714 ,Biology: Biological Differences between Carbon, Proton and Photons Poster Discussion SessionsPTC58-0528 ,Physics: Quality Assurance and VerificationPTC58-0507 ,Oral AbstractsPhysics: Dose Calculation and OptimisationPTC58-0661 ,Biology: Translational and Biomarkers Poster Discussion SessionsPTC58-0221 ,Oral AbstractsPhysics: Dose Calculation and OptimisationPTC58-0531 ,Oral AbstractsPhysics: Dose Calculation and OptimisationPTC58-0653 ,Biology: Drug and Immunotherapy CombinationsPTC58-0163 ,Clinics: Sarcoma - LymphomaPTC58-0055 ,Biology: Drug and Immunotherapy CombinationsPTC58-0166 ,Clinics: CNS / Skull BasePTC58-0198 ,Physics: Treatment PlanningPTC58-0421 ,Clinics: PediatricsPTC58-0560 ,General: New HorizonsPTC58-0709 ,Physics: Treatment PlanningPTC58-0664 ,Clinics: Eye / Breast / Pelvis Poster Discussion SessionsPTC58-0286 ,Physics: Treatment PlanningPTC58-0666 ,Biology: Translational and Biomarkers Poster Discussion SessionsPTC58-0346 ,Physics: Treatment PlanningPTC58-0547 ,Physics: Treatment PlanningPTC58-0308 ,Physics: Treatment PlanningPTC58-0549 ,Physics: Beam Delivery and Nozzle Design Poster Discussion SessionsPTC58-0111 ,Physics: Absolute and Relative DosimetryPTC58-0050 ,Biology: Enhanced Biology in Treatment Planning Poster Discussion SessionsPTC58-0587 ,Biology: Biology and Clinical InterfacePTC58-0454 ,Physics: Absolute and Relative DosimetryPTC58-0052 ,Physics: Commissioning New FacilitiesPTC58-0395 ,Physics: 4D Treatment and DeliveryPTC58-0534 ,Physics: Dose Calculation and OptimisationPTC58-0072 ,Physics: 4D Treatment and DeliveryPTC58-0533 ,Physics: 4D Treatment and DeliveryPTC58-0538 ,Physics: Commissioning New Facilities Poster Discussion SessionsPTC58-0113 ,Physics: Quality Assurance and VerificationPTC58-0633 ,Physics: Treatment PlanningPTC58-0431 ,Physics: Beam Delivery and Nozzle DesignPTC58-0230 ,Biology: Mathematical Modelling SimulationPTC58-0179 ,Clinics: Head and Neck / EyePTC58-0365 ,Physics: Treatment PlanningPTC58-0319 ,Biology: Translational and Biomarkers Poster Discussion SessionsPTC58-0697 ,Biology: Biology and Clinical InterfacePTC58-0663 ,Physics: Commissioning New FacilitiesPTC58-0240 ,Physics: Adaptive TherapyPTC58-0177 ,Physics: Commissioning New FacilitiesPTC58-0363 ,Physics: Commissioning New FacilitiesPTC58-0487 ,Physics: 4D Treatment and DeliveryPTC58-0209 ,Physics: 4D Treatment and DeliveryPTC58-0206 ,Clinics: CNS / Skull BasePTC58-0294 ,Physics: Commissioning New FacilitiesPTC58-0127 ,Biology: Mathematical Modelling SimulationPTC58-0068 ,Physics: Treatment Planning Poster Discussion SessionsPTC58-0062 ,Physics: 4D Treatment and DeliveryPTC58-0692 ,Physics: Quality Assurance and VerificationPTC58-0723 ,Physics: Commissioning New Facilities Poster Discussion SessionsPTC58-0494 ,Physics: Treatment PlanningPTC58-0643 ,Physics: Treatment PlanningPTC58-0521 ,Physics: Treatment PlanningPTC58-0402 ,Physics: Treatment PlanningPTC58-0405 ,Clinics: Head and Neck / EyePTC58-0273 ,Clinics: GIPTC58-0397 ,Physics: Treatment PlanningPTC58-0648 ,Biology: Enhanced Biology in Treatment Planning Poster Discussion SessionsPTC58-0489 ,Physics: Quality Assurance and VerificationPTC58-0617 ,Physics: Quality Assurance and VerificationPTC58-0616 ,Physics: Dose Calculation and Optimisation Poster Discussion SessionsPTC58-0668 ,Clinics: CNS / Skull BasePTC58-0188 ,Oral AbstractsPhysics: Dose Calculation and OptimisationPTC58-0625 ,Physics: Treatment PlanningPTC58-0654 ,Physics: Treatment PlanningPTC58-0655 ,Biology: Drug and Immunotherapy Combinations Poster Discussion SessionsPTC58-0133 ,Clinics: PediatricsPTC58-0313 ,Physics: Treatment PlanningPTC58-0659 ,Poster AbstractsClinics: CNSPTC58-0290 ,Physics: Commissioning New FacilitiesPTC58-0064 ,Physics: Adaptive TherapyPTC58-0396 ,Physics: Dose Calculation and OptimisationPTC58-0281 ,Physics: Quality Assurance and VerificationPTC58-0427 ,Physics: Quality Assurance and VerificationPTC58-0669 ,General: New Horizons SessionPTC58-0191 ,Physics: Dose Calculation and Optimisation Poster Discussion SessionsPTC58-0217 ,Physics: Quality Assurance and VerificationPTC58-0303 ,Physics: Quality Assurance and VerificationPTC58-0665 ,Clinics: Sarcoma - LymphomaPTC58-0495 ,Physics: Dose Calculation and OptimisationPTC58-0398 ,Physics: Quality Assurance and VerificationPTC58-0667 ,Physics: Quality Assurance and VerificationPTC58-0425 ,Physics: Quality Assurance and VerificationPTC58-0541 ,Physics: Treatment PlanningPTC58-0584 ,Physics: Quality Assurance and VerificationPTC58-0540 ,Biology: Drug and Immunotherapy Combinations Poster Discussion SessionsPTC58-0163 ,Physics: Treatment PlanningPTC58-0224 ,Physics: Treatment PlanningPTC58-0229 ,Clinics: PediatricsPTC58-0249 ,Physics: Beam Delivery and Nozzle Design Poster Discussion SessionsPTC58-0555 ,Clinics: PediatricPTC58-0463 ,Physics: Commissioning New Facilities Poster Discussion SessionsPTC58-0556 ,Physics: Absolute and Relative DosimetryPTC58-0498 ,Physics: Commissioning New FacilitiesPTC58-0078 ,Physics: Dose Calculation and OptimisationPTC58-0270 ,Physics: Dose Calculation and OptimisationPTC58-0032 ,Physics: Dose Calculation and OptimisationPTC58-0274 ,Physics: 4D Treatment and DeliveryPTC58-0614 ,Physics: Dose Calculation and OptimisationPTC58-0026 ,Clinics: Head and Neck / EyePTC58-0280 ,Clinics: Eye / Breast / Pelvis Poster Discussion SessionsPTC58-0091 ,Physics: Treatment PlanningPTC58-0593 ,Biology: Drug and Immunotherapy CombinationsPTC58-0012 ,Physics: Dose Calculation and OptimisationPTC58-0025 ,Physics: Dose Calculation and OptimisationPTC58-0146 ,Clinics: Sarcoma - LymphomaPTC58-0261 ,Physics: Treatment PlanningPTC58-0110 ,Clinics: Lung / Sarcoma / LymphomaPTC58-0733 ,Physics: Quality Assurance and VerificationPTC58-0554 ,Physics: Treatment PlanningPTC58-0597 ,Physics: Dose Calculation and Optimisation Poster Discussion SessionsPTC58-0330 ,Physics: Treatment PlanningPTC58-0115 ,Physics: Treatment PlanningPTC58-0598 ,Physics: Absolute and Relative DosimetryPTC58-0040 ,Physics: Absolute and Relative DosimetryPTC58-0282 ,Biology: Enhanced Biology in Treatment Planning Poster Discussion SessionsPTC58-0399 ,Physics: Absolute and Relative DosimetryPTC58-0283 ,Physics: Commissioning New Facilities Poster Discussion SessionsPTC58-0569 ,Clinics: GUPTC58-0647 ,Biology: Biological Differences between Carbon, Proton and Photons Poster Discussion SessionsPTC58-0506 ,Physics: Commissioning New FacilitiesPTC58-0047 ,Physics: Dose Calculation and OptimisationPTC58-0067 ,Clinics: GUPTC58-0409 ,Physics: Dose Calculation and OptimisationPTC58-0065 ,Biology: BNCT Poster Discussion SessionsPTC58-0586 ,Physics: Absolute and Relative Dosimetry PTC58-0393 ,Physics: Image GuidancePTC58-0712 ,Physics: Quality Assurance and VerificationPTC58-0645 ,Physics: Treatment PlanningPTC58-0683 ,Biology: BNCT Poster Discussion SessionsPTC58-0107 ,Physics: Treatment Planning Poster Discussion SessionsPTC58-0266 ,Physics: Monitoring and Modelling MotionPTC58-0530 ,Biology: BNCT Poster Discussion SessionsPTC58-0341 ,Physics: Commissioning New FacilitiesPTC58-0172 ,Physics: Commissioning New Facilities Poster Discussion SessionsPTC58-0456 ,Physics: Dose Calculation and OptimisationPTC58-0170 ,Physics: Commissioning New Facilities Poster Discussion SessionsPTC58-0458 ,Physics: Absolute and Relative DosimetryPTC58-0034 ,Physics: Quality Assurance and VerificationPTC58-0417 ,Physics: Quality Assurance and VerificationPTC58-0413 ,Physics: Treatment Planning Poster Discussion SessionsPTC58-0492 ,Physics: Dose Calculation and OptimisationPTC58-0168 ,Clinics: GI / Sarcoma Poster Discussion SessionsPTC58-0724 ,Physics: Treatment PlanningPTC58-0694 ,Physics: Adaptive TherapyPTC58-0005 ,Physics: Treatment PlanningPTC58-0696 ,Physics: Treatment PlanningPTC58-0453 ,Physics: Adaptive TherapyPTC58-0366 ,Clinics: BreastPTC58-0197 ,Physics: Beam Delivery and Nozzle DesignPTC58-0652 ,Physics: Treatment Planning Poster Discussion SessionsPTC58-0017 ,Physics: Treatment PlanningPTC58-0338 ,Clinics: Head and Neck / EyePTC58-0539 ,General: New Horizons SessionPTC58-0390 ,Physics: Image Guidance Poster Discussion SessionsPTC58-0651 ,General: New HorizonsPTC58-0660 ,Physics: Dose Calculation and OptimisationPTC58-0360 ,Physics: Image GuidancePTC58-0297 ,Physics: 4D Treatment and DeliveryPTC58-0147 ,Scientific: RTTPTC58-0388 ,Physics: Dose Calculation and OptimisationPTC58-0484 ,General: New HorizonsPTC58-0301 ,Physics: Dose Calculation and OptimisationPTC58-0485 ,General: New HorizonsPTC58-0304 ,Physics: 4D Treatment and Delivery Poster Discussion SessionsPTC58-0532 ,Clinics: GIPTC58-0575 ,General: New HorizonsPTC58-0306 ,Physics: Quality Assurance and VerificationPTC58-0589 ,Clinics: CNS / Pediatrics / Lung Poster Discussion SessionsPTC58-0344 ,Physics: Quality Assurance and VerificationPTC58-0225 ,Physics: Treatment PlanningPTC58-0381 ,Physics: Quality Assurance and VerificationPTC58-0467 ,Clinics: CNS / Pediatrics / Lung Poster Discussion SessionsPTC58-0585 ,Physics: Commissioning New FacilitiesPTC58-0416 ,Physics: Quality Assurance and VerificationPTC58-0228 ,Physics: Quality Assurance and VerificationPTC58-0348 ,Physics: Dose Calculation and OptimisationPTC58-0234 ,Physics: Quality Assurance and VerificationPTC58-0101 ,Physics: Treatment PlanningPTC58-0386 ,Physics: Dose Calculation and OptimisationPTC58-0118 ,Physics: Treatment PlanningPTC58-0265 ,Physics: Dose Calculation and OptimisationPTC58-0119 ,Clinics: GIPTC58-0218 ,Physics: Treatment PlanningPTC58-0267 ,Physics: Treatment PlanningPTC58-0387 ,Clinics: BreastPTC58-0142 ,Physics: Treatment PlanningPTC58-0269 ,Physics: Beam Delivery and Nozzle DesignPTC58-0620 ,Clinics: PediatricsPTC58-0048 ,Physics: Quality Assurance and VerificationPTC58-0220 ,Physics: Quality Assurance and VerificationPTC58-0461 ,Physics: Treatment PlanningPTC58-0029 ,Physics: Absolute and Relative DosimetryPTC58-0571 ,Physics: Image GuidancePTC58-0046 ,Clinics: GUPTC58-0557 ,Physics: Absolute and Relative DosimetryPTC58-0211 ,Oral AbstractsPhysics: Dose Calculation and OptimisationPTC58-0131 ,Oral AbstractsPhysics: Dose Calculation and OptimisationPTC58-0373 ,General: New HorizonsPTC58-0411 ,Physics: Dose Calculation and OptimisationPTC58-0595 ,Clinics: CNS / Skull BasePTC58-0361 ,General: New HorizonsPTC58-0414 ,General: New HorizonsPTC58-0537 ,Clinics: GI / Sarcoma Poster Discussion SessionsPTC58-0628 ,Physics: Treatment PlanningPTC58-0271 ,Physics: Commissioning New FacilitiesPTC58-0307 ,Physics: Quality Assurance and VerificationPTC58-0359 ,Physics: Quality Assurance and VerificationPTC58-0354 ,General: New HorizonsPTC58-0419 ,Physics: Treatment PlanningPTC58-0035 ,Biology: BNCTPTC58-0474 ,Clinics: GIPTC58-0460 ,Biology: BNCTPTC58-0596 ,Clinics: GIPTC58-0222 ,Physics: Image GuidancePTC58-0193 ,Clinics: PediatricPTC58-0312 ,Clinics: GUPTC58-0441 ,Clinics: LungPTC58-0701 ,Clinics: EyePTC58-0536 ,Clinics: GUPTC58-0205 ,Physics: Dose Calculation and OptimisationPTC58-0140 ,Clinics: GUPTC58-0208 ,Physics: Dose Calculation and OptimisationPTC58-0020 ,Physics: Image GuidancePTC58-0195 ,Poster AbstractsClinics: CNSPTC58-0717 ,Physics: Quality Assurance and VerificationPTC58-0325 ,Physics: Dose Calculation and OptimisationPTC58-0015 ,Physics: Commissioning New FacilitiesPTC58-0634 ,General: New HorizonsPTC58-0646 ,Physics: Quality Assurance and VerificationPTC58-0566 ,Physics: Dose Calculation and OptimisationPTC58-0134 ,Physics: Dose Calculation and OptimisationPTC58-0376 ,Biology: Mathematical Modelling SimulationPTC58-0462 ,Biology: BNCTPTC58-0567 ,General: New HorizonsPTC58-0527 ,Physics: Treatment PlanningPTC58-0482 ,Clinics: GI, GU, BreastPTC58-0693 ,Physics: Commissioning New FacilitiesPTC58-0518 ,Physics: Quality Assurance and VerificationPTC58-0686 ,Physics: Quality Assurance and VerificationPTC58-0202 ,Physics: Quality Assurance and VerificationPTC58-0322 ,Physics: Quality Assurance and VerificationPTC58-0564 ,Physics: Quality Assurance and VerificationPTC58-0680 ,Physics: Treatment PlanningPTC58-0247 ,Physics: Quality Assurance and VerificationPTC58-0682 ,Physics: Quality Assurance and VerificationPTC58-0440 ,Biology: Translational and BiomarkersPTC58-0514 ,Physics: Beam Delivery and Nozzle Design Poster Discussion SessionsPTC58-0178 ,Clinics: EyePTC58-0520 ,Physics: Absolute and Relative DosimetryPTC58-0231 ,Clinics: Head and Neck / EyePTC58-0424 ,Physics: Absolute and Relative DosimetryPTC58-0471 ,Physics: Absolute and Relative DosimetryPTC58-0356 ,Physics: Dose Calculation and OptimisationPTC58-0491 ,Physics: Dose Calculation and OptimisationPTC58-0250 ,Physics: Commissioning New FacilitiesPTC58-0650 ,Biology: Biology and Clinical InterfacePTC58-0719 ,Physics: Absolute and Relative DosimetryPTC58-0232 ,Physics: Absolute and Relative DosimetryPTC58-0353 ,General: New HorizonsPTC58-0511 ,Physics: Quality Assurance and VerificationPTC58-0219 ,Physics: Absolute and Relative DosimetryPTC58-0238 ,General: New HorizonsPTC58-0512 ,Physics: 4D Treatment and Delivery Poster Discussion SessionsPTC58-0401 ,Clinics: PediatricPTC58-0688 ,Physics: Quality Assurance and VerificationPTC58-0457 ,Physics: Quality Assurance and VerificationPTC58-0214 ,Physics: Quality Assurance and VerificationPTC58-0459 ,General: New HorizonsPTC58-0516 ,Physics: Treatment PlanningPTC58-0372 ,Physics: Treatment PlanningPTC58-0011 ,Physics: Treatment PlanningPTC58-0254 ,Physics: Quality Assurance and VerificationPTC58-0332 ,Clinics: CNS / Skull BasePTC58-0468 ,Biology: Mathematical Modelling SimulationPTC58-0357 ,Clinics: GI / Sarcoma Poster Discussion SessionsPTC58-0649 ,Physics: Dose Calculation and OptimisationPTC58-0006 ,Physics: Quality Assurance and VerificationPTC58-0212 ,Physics: Image Guidance Poster Discussion SessionsPTC58-0565 ,Physics: Treatment PlanningPTC58-0018 ,Physics: Treatment PlanningPTC58-0019 ,Clinics: BreastPTC58-0576 ,Clinics: Head and Neck / EyePTC58-0335 ,Clinics: Head and Neck / EyePTC58-0577 ,General: New HorizonsPTC58-0621 ,Physics: Absolute and Relative DosimetryPTC58-0426 ,Physics: Commissioning New Facilities Poster Discussion SessionsPTC58-0268 ,Physics: Absolute and Relative DosimetryPTC58-0423 ,Physics: Treatment PlanningPTC58-0184 ,Physics: Quality Assurance and VerificationPTC58-0149 ,Clinics: GIPTC58-0378 ,Clinics: GIPTC58-0257 ,Clinics: CNS / Pediatrics / Lung Poster Discussion SessionsPTC58-0662 ,General: New HorizonsPTC58-0627 ,Physics: Treatment PlanningPTC58-0186 ,Physics: Treatment PlanningPTC58-0185 ,Physics: Quality Assurance and VerificationPTC58-0144 ,Biology: BNCT Poster Discussion SessionsPTC58-0602 ,Physics: Treatment PlanningPTC58-0189 ,Physics: Dose Calculation and OptimisationPTC58-0315 ,Clinics: Head and neckPTC58-0300 ,General: New Horizons SessionPTC58-0347 ,Physics: Image GuidancePTC58-0082 ,Clinics: BreastPTC58-0443 ,Physics: 4D Treatment and Delivery Poster Discussion SessionsPTC58-0629 ,Physics: Adaptive Therapy Poster Discussion SessionsPTC58-0007 ,Physics: Commissioning New FacilitiesPTC58-0472 ,Clinics: GI, GU, BreastPTC58-0515 ,Physics: Dose Calculation and Optimisation Poster Discussion SessionsPTC58-0606 ,Oral AbstractsPhysics: Dose Calculation and OptimisationPTC58-0450 ,Physics: Absolute and Relative DosimetryPTC58-0657 ,Physics: Dose Calculation and OptimisationPTC58-0551 ,Physics: Treatment PlanningPTC58-0192 ,Clinics: CNS / Pediatrics / Lung Poster Discussion SessionsPTC58-0675 ,Physics: Treatment PlanningPTC58-0194 ,Physics: Dose Calculation and OptimisationPTC58-0544 ,Physics: Treatment PlanningPTC58-0199 ,Physics: Quality Assurance and VerificationPTC58-0037 ,Oral AbstractsPhysics: Dose Calculation and OptimisationPTC58-0207 ,Clinics: CNS / Pediatrics / Lung Poster Discussion SessionsPTC58-0434 ,Physics: Quality Assurance and VerificationPTC58-0036 ,Physics: Quality Assurance and VerificationPTC58-0278 ,Physics: Quality Assurance and VerificationPTC58-0394 ,Physics: Quality Assurance and VerificationPTC58-0151 ,Physics: Quality Assurance and VerificationPTC58-0154 ,Physics: Dose Calculation and OptimisationPTC58-0428 ,Clinics: BreastPTC58-0116 ,Biology: Enhanced Biology in Treatment Planning Poster Discussion SessionsPTC58-0435 ,Physics: Commissioning New FacilitiesPTC58-0681 ,Physics: Absolute and Relative DosimetryPTC58-0323 ,Physics: Dose Calculation and OptimisationPTC58-0583 ,Physics: Absolute and Relative DosimetryPTC58-0448 ,Clinics: CNS / Skull BasePTC58-0251 ,General: New HorizonsPTC58-0721 ,Physics: Absolute and Relative DosimetryPTC58-0203 ,Physics: Dose Calculation and OptimisationPTC58-0455 ,Physics: 4D Treatment and DeliveryPTC58-0130 ,Physics: Commissioning New FacilitiesPTC58-0679 ,Physics: Absolute and Relative DosimetryPTC58-0329 ,General: New HorizonsPTC58-0604 ,Physics: Absolute and Relative DosimetryPTC58-0449 ,Clinics: CNS / Skull BasePTC58-0132 ,General: New HorizonsPTC58-0607 ,Physics: Quality Assurance and VerificationPTC58-0122 ,Physics: Quality Assurance and VerificationPTC58-0243 ,Physics: Treatment PlanningPTC58-0165 ,Oral AbstractsPhysics: Dose Calculation and OptimisationPTC58-0437 ,Physics: 4D Treatment and DeliveryPTC58-0377 ,Physics: Quality Assurance and VerificationPTC58-0125 ,Physics: Quality Assurance and VerificationPTC58-0245 ,Physics: Dose Calculation and OptimisationPTC58-0337 ,Clinics: GI / Sarcoma Poster Discussion SessionsPTC58-0334 ,Physics: Quality Assurance and VerificationPTC58-0121 ,General: New Horizons SessionPTC58-0563 ,General: New Horizons SessionPTC58-0321 ,Clinics: Head and Neck / EyePTC58-0477 ,Physics: Quality Assurance and VerificationPTC58-0480 ,Clinics: GUPTC58-0010 ,Clinics: EyePTC58-0684 ,Clinics: GUPTC58-0496 ,Clinics: Head and neckPTC58-0676 ,Clinics: GUPTC58-0137 ,Physics: Beam Delivery and Nozzle Design Poster Discussion SessionsPTC58-0256 ,Physics: 4D Treatment and DeliveryPTC58-0117 ,Physics: Absolute and Relative DosimetryPTC58-0552 ,Physics: Absolute and Relative DosimetryPTC58-0310 ,Physics: Absolute and Relative DosimetryPTC58-0672 ,Physics: Absolute and Relative DosimetryPTC58-0436 ,Physics: Dose Calculation and OptimisationPTC58-0452 ,Physics: Dose Calculation and OptimisationPTC58-0331 ,Physics: Commissioning New FacilitiesPTC58-0213 ,Biology: Mathematical Modelling SimulationPTC58-0272 ,Clinics: EyePTC58-0326 ,Physics: Commissioning New FacilitiesPTC58-0568 ,Physics: Dose Calculation and OptimisationPTC58-0444 ,Physics: Quality Assurance and VerificationPTC58-0379 ,Physics: Treatment Planning Poster Discussion SessionsPTC58-0095 ,Physics: Treatment PlanningPTC58-0053 ,Physics: Absolute and Relative DosimetryPTC58-0438 ,Physics: Absolute and Relative DosimetryPTC58-0317 ,Physics: Quality Assurance and VerificationPTC58-0497 ,Physics: Quality Assurance and VerificationPTC58-0375 ,Physics: Treatment PlanningPTC58-0056 ,Physics: 4D Treatment and DeliveryPTC58-0124 ,Clinics: GIPTC58-0009 ,Physics: Quality Assurance and VerificationPTC58-0014 ,Physics: Quality Assurance and VerificationPTC58-0374 ,Clinics: LungPTC58-0727 ,General: New Horizons SessionPTC58-0578 ,Clinics: GI / Sarcoma Poster Discussion SessionsPTC58-0470 ,Clinics: LungPTC58-0204 ,Clinics: Head and neckPTC58-0227 ,Clinics: LungPTC58-0446 ,Physics: Quality Assurance and VerificationPTC58-0190 ,Clinics: Eye / Breast / Pelvis Poster Discussion SessionsPTC58-0609 ,Clinics: LungPTC58-0689 ,General: New HorizonsPTC58-0021 ,General: New HorizonsPTC58-0262 ,Biology: BNCT Poster Discussion SessionsPTC58-0081 ,Clinics: GIPTC58-0726 ,General: New HorizonsPTC58-0145 ,Physics: Image GuidancePTC58-0573 ,General: New HorizonsPTC58-0027 ,General: New HorizonsPTC58-0028 ,Biology: Mathematical Modelling and SimulationPTC58-0148 ,Physics: Dose Calculation and OptimisationPTC58-0635 ,Physics: Image GuidancePTC58-0215 ,Physics: Image GuidancePTC58-0336 ,Poster AbstractsClinics: CNSPTC58-0535 ,Physics: Quality Assurance and VerificationPTC58-0187 ,Biology: BNCT Poster Discussion SessionsPTC58-0084 ,General: New Investigator SessionPTC58-0339 ,General: New Horizons SessionPTC58-0420 ,Physics: Treatment Planning Poster Discussion SessionsPTC58-0523 ,Biology: BNCT Poster Discussion SessionsPTC58-0088 ,Clinics: GI / Sarcoma Poster Discussion SessionsPTC58-0112 ,Physics: Quality Assurance and VerificationPTC58-0182 ,Clinics: Eye / Breast / Pelvis Poster Discussion SessionsPTC58-0615 ,Physics: Quality Assurance and VerificationPTC58-0080 ,Biology: BNCTPTC58-0085 ,Physics: Adaptive Therapy Poster Discussion SessionsPTC58-0722 ,General: New HorizonsPTC58-0253 ,General: New HorizonsPTC58-0255 ,Clinics: PediatricPTC58-0703 ,General: New HorizonsPTC58-0499 ,Physics: Image Guidance Poster Discussion SessionsPTC58-0380 ,General: New HorizonsPTC58-0259 ,Clinics: GI, GU, BreastPTC58-0288 ,Clinics: GI, GU, BreastPTC58-0045 ,Physics: Absolute and Relative DosimetryPTC58-0619 ,Clinics: PediatricPTC58-0707 ,Physics: Quality Assurance and VerificationPTC58-0196 ,Physics: Quality Assurance and VerificationPTC58-0074 ,Physics: Quality Assurance and VerificationPTC58-0077 ,Biology: BNCT Poster Discussion SessionsPTC58-0073 ,Biology: BNCTPTC58-0075 ,Biology: Biological Differences between Carbon, Proton and Photons Poster Discussion SessionsPTC58-0093 ,Clinics: GUPTC58-0161 ,Clinics: GI / Sarcoma Poster Discussion SessionsPTC58-0371 ,Physics: Monitoring and Modelling MotionPTC58-0181 ,General: New HorizonsPTC58-0120 ,General: New HorizonsPTC58-0362 ,General: New HorizonsPTC58-0364 ,Physics: Image GuidancePTC58-0473 ,Scientific: RTTPTC58-0641 ,Clinics: CNS / Pediatrics / Lung Poster Discussion SessionsPTC58-0296 ,General: New HorizonsPTC58-0004 ,General: New HorizonsPTC58-0128 ,Clinics: BreastPTC58-0316 ,Physics: 4D Treatment and Delivery Poster Discussion SessionsPTC58-0236 ,General: New HorizonsPTC58-0008 ,General: New Investigator SessionPTC58-0673 ,Physics: Quality Assurance and VerificationPTC58-0167 ,Physics: Quality Assurance and VerificationPTC58-0289 ,Physics: Quality Assurance and VerificationPTC58-0284 ,General: New Horizons SessionPTC58-0522 ,Physics: Quality Assurance and VerificationPTC58-0164 ,Physics: Quality Assurance and VerificationPTC58-0285 ,Clinics: Eye / Breast / Pelvis Poster Discussion SessionsPTC58-0623 ,Clinics: Eye / Breast / Pelvis Poster Discussion SessionsPTC58-0502 ,Clinics: GUPTC58-0293 ,Biology: Translational and BiomarkersPTC58-0599 ,Biology: BNCTPTC58-0063 ,Clinics: LungPTC58-0656 ,General: New HorizonsPTC58-0592 ,Biology: BNCT Poster Discussion SessionsPTC58-0092 ,Poster AbstractsClinics: CNSPTC58-0302 ,Physics: Image GuidancePTC58-0464 ,General: New HorizonsPTC58-0352 ,Physics: Image GuidancePTC58-0465 ,General: New HorizonsPTC58-0476 ,Physics: Image GuidancePTC58-0100 ,General: New HorizonsPTC58-0235 ,Biology: Mathematical Modelling and SimulationPTC58-0349 ,Physics: Treatment PlanningPTC58-0094 ,Physics: 4D Treatment and Delivery Poster Discussion SessionsPTC58-0367 ,Physics: Dose Calculation and OptimisationPTC58-0400 ,Biology: Translational and BiomarkersPTC58-0244 ,Physics: Dose Calculation and OptimisationPTC58-0640 ,Biology: Mathematical Modelling and SimulationPTC58-0355 ,General: New Investigator SessionPTC58-0320 ,Physics: Quality Assurance and VerificationPTC58-0057 ,Physics: Quality Assurance and VerificationPTC58-0174 ,Physics: Quality Assurance and VerificationPTC58-0295 ,Physics: Dose Calculation and OptimisationPTC58-0529 ,Clinics: GI / Sarcoma Poster Discussion SessionsPTC58-0123 ,Physics: Quality Assurance and VerificationPTC58-0171 ,Biology: Biological Differences between Carbon, Proton and Photons Poster Discussion SessionsPTC58-0049 ,Clinics: BreastPTC58-0731 ,General: New HorizonsPTC58-0223 ,General: New HorizonsPTC58-0102 ,General: New HorizonsPTC58-0466 ,Scientific: RTTPTC58-0503 ,Clinics: CNS / Pediatrics / Lung Poster Discussion SessionsPTC58-0389 ,General: New HorizonsPTC58-0108 ,General: New HorizonsPTC58-0109 ,Physics: Commissioning New FacilitiesPTC58-0736 ,Biology: Mathematical Modelling and SimulationPTC58-0343 ,Biology: Mathematical Modelling and SimulationPTC58-0342 ,Clinics: GI, GU, BreastPTC58-0237 ,Physics: Dose Calculation and OptimisationPTC58-0711 ,Biology: Mathematical Modelling and SimulationPTC58-0581 ,Clinics: GI, GU, BreastPTC58-0114 ,Clinics: Base of SkullPTC58-0730 ,Clinics: Head and neckPTC58-0383 ,Clinics: CNS / Skull BasePTC58-0559 ,Clinics: Base of SkullPTC58-0613 ,General: New HorizonsPTC58-0691 ,Biology: Biological Differences between Carbon, Proton and Photons Poster Discussion SessionsPTC58-0054 ,General: New HorizonsPTC58-0210 ,Clinics: BreastPTC58-0729 ,General: New HorizonsPTC58-0574 ,Clinics: GI, GU, BreastPTC58-0239 ,Scientific: RTTPTC58-0637 ,General: New HorizonsPTC58-0579 ,Clinics: Lung / Sarcoma / LymphomaPTC58-0176 ,General: New HorizonsPTC58-0699 ,Clinics: CNS / Pediatrics / Lung Poster Discussion SessionsPTC58-0156 ,Biology: Mathematical Modelling and SimulationPTC58-0333 ,Biology: Translational and BiomarkersPTC58-0345 ,Physics: Image GuidancePTC58-0369 ,Physics: Commissioning New FacilitiesPTC58-0509 ,Biology: Mathematical Modelling SimulationPTC58-0658 ,Biology: Biological Differences between Carbon, Proton and Photons Poster Discussion SessionsPTC58-0051 ,General: New Investigator SessionPTC58-0548 ,Clinics: GI, GU, BreastPTC58-0241 ,Clinics: Eye / Breast / Pelvis Poster Discussion SessionsPTC58-0412 ,Clinics: GI / Sarcoma Poster Discussion SessionsPTC58-0024 ,Clinics: LungPTC58-0226 ,Biology: Biological Differences between Carbon, Proton and Photons Poster Discussion SessionsPTC58-0069 ,General: New HorizonsPTC58-0562 ,General: New HorizonsPTC58-0561 ,General: New HorizonsPTC58-0201 ,Biology: Mathematical Modelling and SimulationPTC58-0439 ,General: New HorizonsPTC58-0445 ,General: New HorizonsPTC58-0324 ,Physics: Image GuidancePTC58-0031 ,Biology: Mathematical Modelling and SimulationPTC58-0558 ,Physics: Image GuidancePTC58-0392 ,Biology: Mathematical Modelling and SimulationPTC58-0678 ,Physics: Beam Delivery and Nozzle DesignPTC58-0090 ,General: New Investigator SessionPTC58-0630 ,Biology: Biological Differences between Carbon / Proton and Photons Carbons / Proton and PhotonPTC58-0524 ,Physics: Commissioning New FacilitiesPTC58-0713 ,Clinics: GI, GU, BreastPTC58-0139 ,Clinics: CNS / Pediatrics / Lung Poster Discussion SessionsPTC58-0248 ,Clinics: CNS / Pediatrics / Lung Poster Discussion SessionsPTC58-0368 ,Biology: Enhanced Biology in Treatment PlanningPTC58-0519 ,General: New Horizons SessionPTC58-0720 ,Physics: Quality Assurance and VerificationPTC58-0083 ,General: New HorizonsPTC58-0311 ,General: New HorizonsPTC58-0674 ,General: New HorizonsPTC58-0553 ,Physics: Image GuidancePTC58-0023 ,Scientific: RTTPTC58-0612 ,General: New HorizonsPTC58-0677 ,Biology: Mathematical Modelling and SimulationPTC58-0545 ,Physics: Dose Calculation and OptimisationPTC58-0601 ,Physics: Dose Calculation and OptimisationPTC58-0725 ,Physics: Quality Assurance and VerificationPTC58-0098 ,Physics: Dose Calculation and OptimisationPTC58-0605 ,Biology: Biological Differences between Carbon / Proton and Photons Carbons / Proton and PhotonPTC58-0517 ,Biology: Translational and Biomarkers Poster Discussion SessionsPTC58-0618 ,Physics: Monitoring and Modelling MotionPTC58-0481 ,Clinics: GI / Sarcoma Poster Discussion SessionsPTC58-0071 ,Physics: Adaptive TherapyPTC58-0351 ,Physics: 4D Treatment and DeliveryPTC58-0702 ,Physics: Image GuidancePTC58-0734 ,Physics: Image GuidancePTC58-0611 ,Physics: Treatment Planning Poster Discussion SessionsPTC58-0486 ,Physics: Absolute and Relative Dosimetry Poster Discussion SessionsPTC58-0442 ,Biology: Drug and Immunotherapy CombinationsPTC58-0327 ,Clinics: Head and Neck / EyePTC58-0096 ,Clinics: LungPTC58-0159 ,Physics: Treatment PlanningPTC58-0708 ,General: New HorizonsPTC58-0097 ,Physics: Treatment Planning Poster Discussion SessionsPTC58-0350 ,Biology: Biological Differences between Carbon / Proton and Photons Carbons / Proton and PhotonPTC58-0016 ,Physics: Adaptive TherapyPTC58-0104 ,Physics: Absolute and Relative Dosimetry Poster Discussion SessionsPTC58-0433 ,Physics: Image GuidancePTC58-0608 ,Biology: Translational and Biomarkers Poster Discussion SessionsPTC58-0610 ,Clinics: Head and neckPTC58-0058 ,Physics: Treatment PlanningPTC58-0715 ,Clinics: Head and neckPTC58-0298 ,Clinics: EyePTC58-0099 ,General: New HorizonsPTC58-0086 ,General: New HorizonsPTC58-0089 ,Clinics: Lung / Sarcoma / LymphomaPTC58-0200 ,Poster AbstractsClinics: CNSPTC58-0157 ,Clinics: LungPTC58-0141 ,Clinics: LungPTC58-0260 ,Clinics: LungPTC58-0264 ,Physics: Image GuidancePTC58-0513 ,Physics: Image GuidancePTC58-0631 ,Clinics: Eye / Breast / Pelvis Poster Discussion SessionsPTC58-0469 ,Biology: BNCT Poster Discussion SessionsPTC58-0384 ,Physics: Image GuidancePTC58-0639 ,Clinics: PediatricsPTC58-0700 ,Clinics: LungPTC58-0136 ,Clinics: BreastPTC58-0706 ,General: New HorizonsPTC58-0079 ,Biology: Drug and Immunotherapy Combinations Poster Discussion SessionsPTC58-0406 ,Clinics: Base of SkullPTC58-0382 ,Physics: Image GuidancePTC58-0624 ,Physics: Beam Delivery and Nozzle DesignPTC58-0173 ,Biology: Drug and Immunotherapy CombinationsPTC58-0358 ,Poster AbstractsClinics: CNSPTC58-0690 ,General: New HorizonsPTC58-0061 ,Clinics: Lung / Sarcoma / LymphomaPTC58-0580 ,Physics: Monitoring and Modelling MotionPTC58-0162 ,Physics: Adaptive TherapyPTC58-0550 ,Physics: Adaptive TherapyPTC58-0430 ,Clinics: Lung / Sarcoma / LymphomaPTC58-0103 ,General: New Investigator SessionPTC58-0252 ,Physics: Quality Assurance and VerificationPTC58-0704 ,Physics: Image GuidancePTC58-0418 ,Clinics: Base of SkullPTC58-0572 ,Clinics: Lung / Sarcoma / LymphomaPTC58-0106 ,Physics: Beam Delivery and Nozzle DesignPTC58-0022 ,Physics: Monitoring and Modelling MotionPTC58-0279 ,Physics: Treatment Planning Poster Discussion SessionsPTC58-0447 ,Physics: Treatment PlanningPTC58-0622 ,Clinics: PediatricsPTC58-0644 ,Biology: Biology and Clinical InterfacePTC58-0490 ,Clinics: CNS / Skull BasePTC58-0716 ,General: New HorizonsPTC58-0292 ,Biology: Biological Differences between Carbon / Proton and Photons Carbons / Proton and PhotonPTC58-0570 ,General: New HorizonsPTC58-0059 ,Physics: Quality Assurance and VerificationPTC58-0710 ,Biology: Biological Differences between Carbon / Proton and Photons Carbons / Proton and PhotonPTC58-0216 ,Physics: Image GuidancePTC58-0404 ,Physics: Image GuidancePTC58-0525 ,Physics: Image GuidancePTC58-0526 ,Poster AbstractsClinics: CNSPTC58-0328 ,Clinics: LungPTC58-0070 ,Clinics: Eye / Breast / Pelvis Poster Discussion SessionsPTC58-0135 ,Biology: BNCT Poster Discussion SessionsPTC58-0391 ,Physics: Treatment PlanningPTC58-0510 ,Physics: Treatment PlanningPTC58-0636 ,Physics: Treatment PlanningPTC58-0638 ,Physics: Image GuidancePTC58-0408 ,Physics: Absolute and Relative Dosimetry Poster Discussion SessionsPTC58-0632 ,Physics: Treatment Planning Poster Discussion SessionsPTC58-0318 ,Biology: Enhanced Biology in Treatment PlanningPTC58-0246 ,Clinics: PediatricsPTC58-0504 ,General: New HorizonsPTC58-0160 ,Physics: Image Guidance Poster Discussion SessionsPTC58-0076 ,Physics: Monitoring and Modelling MotionPTC58-0143 ,Biology: Mathematical Modelling and SimulationPTC58-0718 ,Physics: Image GuidancePTC58-0671 ,Clinics: LungPTC58-0183 ,Physics: Image GuidancePTC58-0670 ,Report ,Physics: Treatment Planning Poster Discussion SessionsPTC58-0422 ,Biology: Biological Differences between Carbon / Proton and Photons Carbons / Proton and PhotonPTC58-0129 ,Physics: Adaptive Therapy Poster Discussion SessionsPTC58-0705 ,Biology: Enhanced Biology in Treatment PlanningPTC58-0258 ,General: New HorizonsPTC58-0030 ,General: New HorizonsPTC58-0150 ,Biology: Biology and Clinical InterfacePTC58-0479 ,General: New HorizonsPTC58-0153 ,Clinics: PediatricPTC58-0087 ,General: New HorizonsPTC58-0152 ,General: New HorizonsPTC58-0155 ,General: New HorizonsPTC58-0033 ,General: New HorizonsPTC58-0158 ,Physics: Image GuidancePTC58-0429 ,Biology: Translational and BiomarkersPTC58-0287 ,Physics: Adaptive TherapyPTC58-0403 ,Physics: Image GuidancePTC58-0309 - Published
- 2020
18. Obesidad y síndrome metabólico en niños y adolescentes
- Author
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Dr. Castillo-Durán Garlos, Le Roy O. Catalina, Dra., and Osorio E. Jessica, Nut.
- Subjects
Obesidad ,síndrome metabólico ,niños ,adolescentes ,Medicine - Abstract
La obesidad general y en niños es un problema de salud pública con claro aumento a nivel mundial y en Chile. En las edades pediátricas, aparte de sus consecuencias traumatológicas, metabólicas y psicológicas, ya tiene un impacto en el riesgo de enfermedades en las edades adultas. El concepto de síndrome metabólico está en uso hace algunos años en la edad adulta, para aunar factores de riesgo de llegar a desarrollar diabetes tipo II y enfermedad cardiovascular. En pediatría hay suficiente evidencia que son factores predictores de riesgo desde la edad escolar la mayoría de los componentes estudiados en adultos: aumento de circunferencia abdominal, de presión arterial sistólica y diastólica, de triglicéridos y disminución de colesterol HDL sérico. Están en estudio otros componentes del síndrome: resistencia insulínica, adiposidad intraabdominal, hiperuricemia, hiperleptinemia, grosor aumentado de íntimamedia arterial, signos sugerentes de hígado graso. Se justifica el estudio de estos factores en niños y adolescentes obesos y su manejo intensivo por un equipo profesional entrenado.
- Published
- 2012
- Full Text
- View/download PDF
19. Malnutrition-related parasite dissemination from the skin in visceral leishmaniasis is driven by PGE2-mediated amplification of CCR7-related trafficking of infected inflammatory monocytes.
- Author
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Osorio, E. Yaneth, Uscanga-Palomeque, Ashanti, Patterson, Grace E., Cordova, Erika, Travi, Bruno L., Soong, Lynn, and Melby, Peter C.
- Subjects
- *
VISCERAL leishmaniasis , *LEISHMANIA mexicana , *MONOCYTES , *DIPHTHERIA toxin , *CYCLOOXYGENASES , *LATENT infection - Abstract
People are infected with Leishmania donovani when the parasite is deposited in the dermis during the blood meal of the sand fly vector. Most infected people develop a subclinical latent infection, but some develop progressive visceral leishmaniasis. Malnutrition is a risk factor for the development of active VL. We previously demonstrated increased parasite dissemination from the skin to visceral organs in a murine model of malnutrition. Here we investigated the mechanism of early parasite dissemination. After delivery of L. donovani to the skin, we found enhanced capture of parasites by inflammatory monocytes and neutrophils in the skin of malnourished mice. However, parasite dissemination in malnourished mice was driven primarily by infected inflammatory monocytes, which showed increased CCR7 expression, greater intrinsic migratory capacity, and increased trafficking from skin to spleen. PGE2 production, which was increased at the site of skin infection, increased monocyte CCR7 expression and promoted CCR7-related monocyte-mediated early parasite dissemination in malnourished mice. Parasite dissemination in monocytes was reduced by inhibition of PGE2, knockdown or silencing of CCR7 in monocytes, and depletion of inflammatory monocytes through administration of diphtheria toxin to CSFR1-DTR transgenic mice that have monocyte-specific DT receptor expression. CCR7-driven trafficking of infected inflammatory monocytes through the lymph node was accompanied by increased expression of its ligands CCL19 and CCL21. These results show that the CCR7/PGE2 axis is responsible for the increased trafficking of L. donovani-infected inflammatory monocytes from the skin to the spleen in the malnourished host. Undernutrition and production of PGE2 are potential targets to reduce the risk of people developing VL. Nutritional interventions that target improved immune function and reduced PGE2 synthesis should be studied in people at risk of developing VL. Author summary: This study established that inflammatory monocytes contribute to the visceralization of L. donovani parasites in the malnourished host. We found that the prostaglandin E2 produced during the first 72 hours of infection amplified the parasite burden at the site of skin infection and induced a high expression of CCR7 receptor in inflammatory monocytes. CCR7-bearing inflammatory monocytes carried L. donovani parasites via enhanced migration from the skin infection site to the viscera of malnourished mice. This dissemination of Leishmania parasites was abrogated in CCR7 deficient inflammatory monocytes and in mice treated with a prostaglandin E synthase inhibitor. We conclude that PGE2 contributes to monocyte-mediated parasite dissemination through the expression of CCR7 and its ligands in malnourished mice. [ABSTRACT FROM AUTHOR]
- Published
- 2023
- Full Text
- View/download PDF
20. Tai Chi diminishes oxidative stress in Mexican older adults
- Author
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Rosado-Pérez, J., Santiago-Osorio, E., Ortiz, R., and Mendoza-Núñez, V. M.
- Published
- 2012
- Full Text
- View/download PDF
21. 49MO Patterns of relapse following thoracic radiotherapy in patients with limited-stage small cell lung cancer as part of the CONVERT trial
- Author
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Portner, R., primary, Osorio, E. Vasquez, additional, Iype, R., additional, and Faivre-Finn, C., additional
- Published
- 2021
- Full Text
- View/download PDF
22. Caracterizacion por Ardrea de microorganismos acidofilos aislados en minas de oro de Marmato, Colombia
- Author
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Osorio E., Victor Manuel, Márquez F., Edna Judith, and Márquez G., Marco A.
- Published
- 2007
23. The role of computational methods for automating and improving clinical target volume definition
- Author
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Unkelbach, J., Bortfeld, T., Cardenas, C. E., Gregoire, V., Hager, W., Heijmen, B., Jeraj, R., Korreman, S. S., Ludwig, R., Pouymayou, B., Shusharina, N., Söderberg, J., Toma-Dasu, I., (0000-0001-9550-9050) Troost, E. G. C., Osorio, E. V., Unkelbach, J., Bortfeld, T., Cardenas, C. E., Gregoire, V., Hager, W., Heijmen, B., Jeraj, R., Korreman, S. S., Ludwig, R., Pouymayou, B., Shusharina, N., Söderberg, J., Toma-Dasu, I., (0000-0001-9550-9050) Troost, E. G. C., and Osorio, E. V.
- Abstract
Treatment planning in radiotherapy distinguishes three target volume concepts: the gross tumor volume (GTV), the clinical target volume (CTV), and the planning target volume (PTV). Over time, GTV definition and PTV margins have improved through the development of novel imaging techniques and better image guidance, respectively. CTV definition is sometimes considered the weakest element in the planning process. CTV definition is particularly complex since the extension of microscopic disease cannot be seen using currently available in-vivo imaging techniques. Instead, CTV definition has to incorporate knowledge of the patterns of tumor progression. While CTV delineation has largely been considered the domain of radiation oncologists, this paper, arising from a 2019 ESTRO Physics research workshop, discusses the contributions that medical physics and computer science can make by developing computational methods to support CTV definition. First, we overview the role of image segmentation algorithms, which may in part automate CTV delineation through segmentation of lymph node stations or normal tissues representing anatomical boundaries of microscopic tumor progression. The recent success of deep convolutional neural networks has also enabled learning entire CTV delineations from examples. Second, we discuss the use of mathematical models of tumor progression for CTV definition, using as example the application of glioma growth models to facilitate GTV-to-CTV expansion for glioblastoma that is consistent with neuroanatomy. We further consider statistical machine learning models to quantify lymphatic metastatic progression of tumors, which may eventually improve elective CTV definition. Lastly, we discuss approaches to incorporate uncertainty in CTV definition into treatment plan optimization as well as general limitations of the CTV concept in the case of infiltrating tumors without natural boundaries.
- Published
- 2020
24. In-situ proliferation contributes to the accumulation of myeloid cells in the spleen during progressive experimental visceral leishmaniasis
- Author
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Osorio, E. Yaneth, primary, Medina-Colorado, Audrie A., additional, Travi, Bruno L., additional, and Melby, Peter C., additional
- Published
- 2020
- Full Text
- View/download PDF
25. Caracterización por Ardrea de microorganismos acidófilos aislados en minas de oro de Marmato, Colombia
- Author
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Edna Judith Márquez F., Marco Márquez G., and Victor Manuel Osorio E.
- Subjects
Ardrea ,ARNr 16S ,microorganismos acidófilos ,identificación molecular ,polimorfismos de colonia ,medio sólido doble capa ,Biotechnology ,TP248.13-248.65 - Abstract
La bio-oxidación de minerales mejora la recuperación de metales valiosos y disminuye el impacto negativo causado por los subproductos de las operaciones mineras, pero las interacciones de los microorganismos involucrados son poco conocidas. Con el objeto de avanzar en el estudio de interacciones microbianas de bacterias acidófilas nativas en cultivos mixtos, en este trabajo se utilizó la siembra en medio sólido doble capa y el análisis de enzimas de restricción del ADN ribosomal amplificado (Ardrea) con las enzimas Eco72I, Eco24I, XcmI y BsaAI para caracterizar cuatro aislados tomados de minas de oro de Marmato, Colombia. Los aislados que oxidan hierro y azufre exhibieron patrones de restricción del gen ARNr 16S compatibles con los reportados para Acidithiobacillus ferrooxidans, aunque uno de ellos mostró una morfología de colonia que no ha sido descrita para esta especie; el aislado que oxida azufre mostró un patrón que coincide con el análisis teórico realizado sobre secuencias para Acidithiobacillus thiooxidans incluidas en bases de datos primarias. La técnica Ardrea permitió diferenciar entre At.ferrooxidans y At.thiooxidans, y verificar si la identidad de los aislados correspondía con sus características fisiológicas y la morfología de sus colonias.
- Published
- 2007
26. Efficacy of histamine H1 receptor antagonists azelastine and fexofenadine against cutaneous Leishmania major infection
- Author
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Peniche, Alex G., primary, Osorio, E. Yaneth, additional, Melby, Peter C., additional, and Travi, Bruno L., additional
- Published
- 2020
- Full Text
- View/download PDF
27. Triggering receptor expressed on myeloid cells (TREM-1) is regulated post-transcriptionally and its ligand is present in the sera of some septic patients
- Author
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Wong-Baeza, I., González-Roldán, N., Ferat-Osorio, E., Esquivel-Callejas, N., Aduna-Vicente, R., Arriaga-Pizano, L., Astudillo-de la Vega, H., Villasis-Keever, M. A., Torres-González, R., Estrada-García, I., López-Macías, C., and Isibasi, A.
- Published
- 2006
28. Is reducing irradiated margins key to improving outcomes for radiotherapy
- Author
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Herk, M., Osorio, E., (0000-0001-9550-9050) Troost, E. G. C., Herk, M., Osorio, E., and (0000-0001-9550-9050) Troost, E. G. C.
- Abstract
Radiotherapy is a four-dimensional geometrical challenge. For modern radiotherapy planning, gross tumour volume (GTV) is pictured before treatment using CT scanning fused with anatomical and functional imaging. To account for microscopic tumour spread, a safety margin is added to the GTV and corrected for anatomical boundaries to determine the clinical target volume (CTV). Finally, systematic and random errors occurring during the fractionated course of radiotherapy are corrected for by adding another safety margin.
- Published
- 2019
29. SafeWalk App, mobile application in health for people living in motor disabilities
- Author
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Osorio, E A, primary, Osorio, J D, additional, and García, D A, additional
- Published
- 2019
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30. Technology Roadmapping Architecture Based on Knowledge Management: Case Study for Improved Indigenous Coffee Production from Guerrero, Mexico
- Author
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Contreras-Medina, D. I., primary, Sánchez Osorio, E., additional, Olvera Vargas, L. A., additional, and Romero Romero, Y., additional
- Published
- 2019
- Full Text
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31. Silver-loaded nanoparticles affect ex-vivo mechanical behavior and mineralization of dentin
- Author
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Toledano, M, primary, Aguilera, FS, additional, Cabello, I, additional, Toledano-Osorio, M, additional, Osorio, E, additional, Lopez-Lopez, MT, additional, Garcia-Godoy, F, additional, Lynch, F, additional, and Osorio, R, additional
- Published
- 2019
- Full Text
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32. Chemical characterization of Coco Fiber (Cocus nucifera L.) from Mexico using Infrared Spectroscopy (FTIR)
- Author
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Hernández Vidal, N. E., López Bautista, Vicente, Calderón Osorio, E. S., Morales Morales, V., Méndez Ordóñez, W., Hernández Vidal, N. E., López Bautista, Vicente, Calderón Osorio, E. S., Morales Morales, V., and Méndez Ordóñez, W.
- Abstract
There is a growing interest in products with less environmental impact, this makes the use of natural fibers a viable alternative. The use of materials of biological origin is increasing in an attempt to reduce the amount of thermoplastic polymers from non-renewable sources. In this framework, the work characterizes the chemical characterization of coconut fiber (Cocus nucifera L.), by means of infrared spectroscopy (FTIR), and the spectra of the fibers of coconut, from two important growing sites, the Acapulco and San Jerónimo de Juárez regions, in the state of Guerrero, Mexico, the results obtained are compared with other spectra of other natural fibers, due to the high content of lignin, properties are attributed viscoelastic, by which it is inferred that when the fibers are subjected to a compression load or an impact force, the amorphous region (lignin) functions as a buffer and is resilient to the applied phenomena, a desirable characteristic in packaging materials, this proves that the coconut fiber with natural binder, could be a proposal to be used as packing material in packaging, the data corroborate a high percentage of cellulose and lignin present in the samples studied., Existe un creciente interés en productos con menor impacto ambiental, esto hace que el uso de fibras naturales sea una alternativa viable. El uso de materiales de origen biológico está aumentando en un intento de reducir la cantidad de polímeros termoplásticos de fuentes no renovables. En este marco se presenta el trabajo caracterización química de la fibra de coco (Cocus nucifera L.), mediante espectroscopía de infrarrojo (FTIR) , y se muestran los espectros de las fibras de coco, de dos lugares de cultivo importantes, la región de Acapulco y San Jerónimo de Juárez, en el estado de Guerrero, México , los resultados obtenidos son comparados con otros espectros de otras fibras naturales, debido al alto contenido de lignina se le atribuyen propiedades viscoelásticas, por lo que se infiere que al ser sometidas las fibras a una carga de compresión o una fuerza de impacto, la región amorfa (lignina) funciona como amortiguador y es resiliente a los fenómenos aplicados, una característica deseable en los materiales de embalaje, esto prueba que la fibra de coco con aglomerante natural, pudiera ser una propuesta para usarse como material de relleno en embalajes, los datos corroboran un alto porcentaje de celulosa y lignina presenteen las muestras estudiadas.
- Published
- 2018
33. P2.17-08 Heart Motion in Lung Radiotherapy: How Representative Are Delineations Based on 3DCT, Average and Maximum Projection Scans?
- Author
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Vasquez Osorio, E., primary, Mccallum, H., additional, Iqbal, S., additional, Bedair, A., additional, McWilliam, A., additional, Price, G., additional, Byrne, J., additional, and Cobben, D., additional
- Published
- 2018
- Full Text
- View/download PDF
34. P1.17-01 Robustness of an Image-Based Data Mining Approach in Lung Cancer Patients
- Author
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Vasquez Osorio, E., primary, Aznar, M., additional, Green, A., additional, Faivre-Finn, C., additional, Van Herk, M., additional, and McWilliam, A., additional
- Published
- 2018
- Full Text
- View/download PDF
35. P2.16-08 Influence of Tumour Location and Histological Sub-Type of Non-Small Cell Lung Cancer on Patient Survival
- Author
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McWilliam, A., primary, Davey, A., additional, Vasquez Osorio, E., additional, Aznar, M., additional, Faivre-Finn, C., additional, and Van Herk, M., additional
- Published
- 2018
- Full Text
- View/download PDF
36. OA01.03 Interaction Between Dose and Calcifications Is a Predictor for Overall Survival in Lung Cancer Patients Receiving Radiotherapy
- Author
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Vasquez Osorio, E., primary, Brewster, F., additional, Cobben, D., additional, Faivre-Finn, C., additional, Scaife, A., additional, Van Herk, M., additional, and McWilliam, A., additional
- Published
- 2018
- Full Text
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37. A zinc-doped endodontic cement facilitates functional mineralization and stress dissipation at the dentin surface
- Author
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Toledano, M, primary, Osorio, R, additional, Perez-Alvarez, MC, additional, Osorio, E, additional, Lynch, CD, additional, and Toledano-Osorio, M, additional
- Published
- 2018
- Full Text
- View/download PDF
38. The treatment of childhood acute lymphoblastic leukemia in Guatemala: Biologic features, treatment hurdles, and results
- Author
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Antillón, F, BLANCO LOPEZ, J, Valverde, P, Castellanos, M, Garrido, C, Girón, V, Letona, T, Osorio, E, Borrayo, D, Mack, R, Melgar, M, Lorenzana, R, Ribeiro, R, Metzger, M, Conter, V, Rossi, E, Valsecchi, M, BLANCO LOPEZ, JESSICA GISELLE, Antillón, F, BLANCO LOPEZ, J, Valverde, P, Castellanos, M, Garrido, C, Girón, V, Letona, T, Osorio, E, Borrayo, D, Mack, R, Melgar, M, Lorenzana, R, Ribeiro, R, Metzger, M, Conter, V, Rossi, E, Valsecchi, M, and BLANCO LOPEZ, JESSICA GISELLE
- Abstract
BACKGROUND: The National Pediatric Oncology Unit (UNOP) is the only pediatric hemato-oncology center in Guatemala. METHODS: Patients ages 1 to 17 years with acute lymphoblastic leukemia (ALL) were treated according to modified ALL Intercontinental Berlin-Frankfurt-Münster (IC-BFM) 2002 protocol. Risk classification was based on age, white blood cell count, immunophenotype, genetics (when available), and early response to therapy. RESULTS: From July 2007 to June 2014, 787 patients were treated, including 160 who had standard-risk ALL, 450 who had intermediate-risk ALL, and 177 who had high-risk ALL. The induction death rate was 6.6%, and the remission rate was 92.9%. The rates of death and treatment abandonment during first complete remission were 4.8% and 2.5%, respectively. At a median observation time of 3.6 years, and with abandonment considered an event, the 5-year event-free survival and overall survival estimates (± standard error) were 56.2% ± 2.1% and 64.1% ± 2.1%, respectively, with a 5-year cumulative incidence of relapse of 28.9% ± 2.0%. Twenty-one of 281 patients (7.5%) investigated were positive for the ets variant 6/runt-related transcription factor 1 (ETV6/RUNX1) fusion. CONCLUSIONS: A well organized center in a low-middle-income country can overcome the disadvantages of malnutrition and reduce abandonment. Outcomes remain suboptimal because of late diagnosis, early death, and a high relapse rate, which may have a partly genetic basis. Earlier diagnosis, better management of complications, and better knowledge of ALL will improve outcomes. Cancer 2017;123:436–448. © 2016 American Cancer Society.
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- 2017
39. Prediction of cardiovascular disease by the framingham-REGICOR equation in the high-risk PREDIMED cohort: Impact of the mediterranean diet across different risk strata
- Author
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Instituto de Salud Carlos III, Centro Nacional de Investigaciones Cardiovasculares (España), Ministerio de Ciencia e Innovación (España), California Walnut Commission, Amor, A.J., Serra-Mir, M., Martínez-González, M.A., Corella, D., Salas-Salvadó, J., Fitó, Montserrat, Estruch, R., Serra-Majem, L., Arós, F., Babio, N., Ros, E., Cofán, M., Lecea, O., Rosique Esteban, N., Valls-Pedret, C., Freitas-Simoes, T.M., Doménech, M., Gilabert, R., Sagredo Arce, T., Bertolín-Muñoz, A., Tresserra-Rimbau, A., Jurado-Ruíz, Enrique, Salaverría, I., Pages, M.A., Cabré, J.J., Mestres, G., Paris, F., Llauradó, M., Pedret, R., Basells, J., Vizcaino, J., Segarra, R., Sacanella, E., Casas, Ricard, Frontera, G., Alonso-Gómez, A., Godoy, D., López-Sabater, M.C., de la Torre, Rafael, del Hierro, T., Hernandez-Alonso, P., Giardina, S., Ferreira-Pego, C., Pérez-Cabrera, J., Papandreou, C., Baby, P., Camacho, L., Toledo, E., Casanas Quintana, T., Carratalá-Calvo, A., Buil-Cosiales, P., Rovira, A., Ruiz-Canela, M., Martínez, J. Alfredo, Fiol, Miquel, Castellote-Bargalló, Ana I., Algorta, J., Álvarez-Pérez, J., Sanjulian, B., Ortega, E., Sánchez-Tainta, A., Díez-Espino, Javier, Sánchez-Villegas, A., Ginard, M., Fiol, F., García-Valdueza, M., Marrugat, J., Schröder, H., Molina, N., Maestre, E., Castañer, O., Farré, M., Sorli, J.V., Ramos, A., García, J., Moñino, M., Santamaría, M.I., Fernández-Rodríguez, M. J., Jover, A., Pérez-Heras, A., Zanon-Moreno, V., Díaz-Benítez, E.M., Carrasco, P., Ortega-Azorín, Carolina, Asensio, E.M., Oller, M., Proenza, A., Osma, R., Bargalló, N., Barragán, R., Francés, F., García, M., Romaguera, D., Guillén, M., Márquez, F., González, J.I., Saiz, C., Portillo, María P., Mengual, L., Viñas, C., Bautista-Castaño, Inmaculada, de Santamaría, L., Portolés, Olga, Giménez, F.J., Coltell, O., Guillem-Saiz, P., Chiva, G., Mata, M., Sorli, M., de Juan, C., Roura, P., Rekondo, J., Belló, M.C., Loma-Osorio, A., Gómez-Gracia, Enrique, Warnberg, J., Benítez Pont, R., Bianchi Alba, M., Gómez-Huelgas, R., Gueto Rubio, M.V., Bulló, M., Sáez, G., Yuste, M.C., Martínez, P., Valderas, P., Brau, A., Martínez-González, J., Velasco García, V., Romero, S., de Diego Salas, J., Razquin, C., Baca Osorio, A., Gil Zarzosa, J., Becerra-Tomás, Nerea, Guarner, A., Sánchez Luque, J.J., Eguaras, S., Vargas López, E., Ruiz-Gutiérrez, Valentina, Ibarrola-Jurado, Nuria, Tur, J.A., García Roselló, J., Perona, Javier S., Vigata López, M.D., Montero Romero, Emilio, García-García, M., Isach, A., Basora, J., González, R., Nissensohn, M., Díaz-González, V., Ruano-Rodríguez, C., Ortiz-Andrelluchi, A.P., Macías Gutiérrez, B., Santana-Santana, A.J., Pintó, Xavier, de la Cruz, E., García-Arellano, A., Mena, G., Marti, A., Salas-Huetos, A., Díaz-López, A., Arceiz Campo, M.T., Arranz, S., Martín, F., Galera, A., Soler, Y., Trias, F., Elosua, R., Sarasa, I., Quiles, L., Padres, E., Corbella, Emili, Muñoz-Aguayo, Daniel, Molina, C., Cabezas, C., Martín-Rillo, M.J., Vinyoles, E., Rovira, M.A., Goñi, E., Urtasun Samper, A., Tort, N., Sola, A., García, L., Baena, J.M., Flores, G., Verdú, J.M., Tello, S., Arroyo-Azpa, C., García-Pérez, L., Vazquez, Z., Amat, J., Duaso, I., García, Y., Iglesias, C., Simón, C., Quinzavos, L., Parra, L., Liroz, M., Pascual, V., García de la Noceda Montoy, M.D., Berrade, N., Llopis-Osorio, E., Vila, J., Villanueva Telleria, J., Benavent, J., Clos, J., Pla, I., Amorós, M., Bonet, M.T., Sanz, E., Extremera-Urabayen, V., Martín, M. T., Prieto, R., Sánchez, M.S., Altirriba, J., Ruiz-Baixauli, J., Cortés Ugalde, F., Manzano, E., Lamuela-Raventós, Rosa M., Altés, A., Sala-Vila, A., Francisco, S., Riera, C., Instituto de Salud Carlos III, Centro Nacional de Investigaciones Cardiovasculares (España), Ministerio de Ciencia e Innovación (España), California Walnut Commission, Amor, A.J., Serra-Mir, M., Martínez-González, M.A., Corella, D., Salas-Salvadó, J., Fitó, Montserrat, Estruch, R., Serra-Majem, L., Arós, F., Babio, N., Ros, E., Cofán, M., Lecea, O., Rosique Esteban, N., Valls-Pedret, C., Freitas-Simoes, T.M., Doménech, M., Gilabert, R., Sagredo Arce, T., Bertolín-Muñoz, A., Tresserra-Rimbau, A., Jurado-Ruíz, Enrique, Salaverría, I., Pages, M.A., Cabré, J.J., Mestres, G., Paris, F., Llauradó, M., Pedret, R., Basells, J., Vizcaino, J., Segarra, R., Sacanella, E., Casas, Ricard, Frontera, G., Alonso-Gómez, A., Godoy, D., López-Sabater, M.C., de la Torre, Rafael, del Hierro, T., Hernandez-Alonso, P., Giardina, S., Ferreira-Pego, C., Pérez-Cabrera, J., Papandreou, C., Baby, P., Camacho, L., Toledo, E., Casanas Quintana, T., Carratalá-Calvo, A., Buil-Cosiales, P., Rovira, A., Ruiz-Canela, M., Martínez, J. Alfredo, Fiol, Miquel, Castellote-Bargalló, Ana I., Algorta, J., Álvarez-Pérez, J., Sanjulian, B., Ortega, E., Sánchez-Tainta, A., Díez-Espino, Javier, Sánchez-Villegas, A., Ginard, M., Fiol, F., García-Valdueza, M., Marrugat, J., Schröder, H., Molina, N., Maestre, E., Castañer, O., Farré, M., Sorli, J.V., Ramos, A., García, J., Moñino, M., Santamaría, M.I., Fernández-Rodríguez, M. J., Jover, A., Pérez-Heras, A., Zanon-Moreno, V., Díaz-Benítez, E.M., Carrasco, P., Ortega-Azorín, Carolina, Asensio, E.M., Oller, M., Proenza, A., Osma, R., Bargalló, N., Barragán, R., Francés, F., García, M., Romaguera, D., Guillén, M., Márquez, F., González, J.I., Saiz, C., Portillo, María P., Mengual, L., Viñas, C., Bautista-Castaño, Inmaculada, de Santamaría, L., Portolés, Olga, Giménez, F.J., Coltell, O., Guillem-Saiz, P., Chiva, G., Mata, M., Sorli, M., de Juan, C., Roura, P., Rekondo, J., Belló, M.C., Loma-Osorio, A., Gómez-Gracia, Enrique, Warnberg, J., Benítez Pont, R., Bianchi Alba, M., Gómez-Huelgas, R., Gueto Rubio, M.V., Bulló, M., Sáez, G., Yuste, M.C., Martínez, P., Valderas, P., Brau, A., Martínez-González, J., Velasco García, V., Romero, S., de Diego Salas, J., Razquin, C., Baca Osorio, A., Gil Zarzosa, J., Becerra-Tomás, Nerea, Guarner, A., Sánchez Luque, J.J., Eguaras, S., Vargas López, E., Ruiz-Gutiérrez, Valentina, Ibarrola-Jurado, Nuria, Tur, J.A., García Roselló, J., Perona, Javier S., Vigata López, M.D., Montero Romero, Emilio, García-García, M., Isach, A., Basora, J., González, R., Nissensohn, M., Díaz-González, V., Ruano-Rodríguez, C., Ortiz-Andrelluchi, A.P., Macías Gutiérrez, B., Santana-Santana, A.J., Pintó, Xavier, de la Cruz, E., García-Arellano, A., Mena, G., Marti, A., Salas-Huetos, A., Díaz-López, A., Arceiz Campo, M.T., Arranz, S., Martín, F., Galera, A., Soler, Y., Trias, F., Elosua, R., Sarasa, I., Quiles, L., Padres, E., Corbella, Emili, Muñoz-Aguayo, Daniel, Molina, C., Cabezas, C., Martín-Rillo, M.J., Vinyoles, E., Rovira, M.A., Goñi, E., Urtasun Samper, A., Tort, N., Sola, A., García, L., Baena, J.M., Flores, G., Verdú, J.M., Tello, S., Arroyo-Azpa, C., García-Pérez, L., Vazquez, Z., Amat, J., Duaso, I., García, Y., Iglesias, C., Simón, C., Quinzavos, L., Parra, L., Liroz, M., Pascual, V., García de la Noceda Montoy, M.D., Berrade, N., Llopis-Osorio, E., Vila, J., Villanueva Telleria, J., Benavent, J., Clos, J., Pla, I., Amorós, M., Bonet, M.T., Sanz, E., Extremera-Urabayen, V., Martín, M. T., Prieto, R., Sánchez, M.S., Altirriba, J., Ruiz-Baixauli, J., Cortés Ugalde, F., Manzano, E., Lamuela-Raventós, Rosa M., Altés, A., Sala-Vila, A., Francisco, S., and Riera, C.
- Abstract
Background-The usefulness of cardiovascular disease (CVD) predictive equations in different populations is debatable. We assessed the efficacy of the Framingham-REGICOR scale, validated for the Spanish population, to identify future CVD in participants, who were predefined as being at high-risk in the PREvención con DIeta MEDiterránea (PREDIMED) study-a nutrition-intervention primary prevention trial-and the impact of adherence to the Mediterranean diet on CVD across risk categories. Methods and Results-In a post hoc analysis, we assessed the CVD predictive value of baseline estimated risk in 5966 PREDIMED participants (aged 55-74 years, 57% women; 48% with type 2 diabetes mellitus). Major CVD events, the primary PREDIMED end point, were an aggregate of myocardial infarction, stroke, and cardiovascular death. Multivariate-adjusted Cox regression was used to calculate hazard ratios for major CVD events and effect modification from the Mediterranean diet intervention across risk strata (low, moderate, high, very high). The Framingham-REGICOR classification of PREDIMED participants was 25.1% low risk, 44.5% moderate risk, and 30.4% high or very high risk. During 6-year follow-up, 188 major CVD events occurred. Hazard ratios for major CVD events increased in parallel with estimated risk (2.68, 4.24, and 6.60 for moderate, high, and very high risk), particularly in men (7.60, 13.16, and 15.85, respectively, versus 2.16, 2.28, and 3.51, respectively, in women). Yet among those with low or moderate risk, 32.2% and 74.3% of major CVD events occurred in men and women, respectively. Mediterranean diet adherence was associated with CVD risk reduction regardless of risk strata (P > 0.4 for interaction). Conclusions-Incident CVD increased in parallel with estimated risk in the PREDIMED cohort, but most events occurred in non- high-risk categories, particularly in women. Until predictive tools are improved, promotion of the Mediterranean diet might be useful to reduce CVD indepen
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- 2017
40. Cag diseños maderables sas Asignación y comunicación de responsabilidades especificas en seguridad y salud en el trabajo 2016
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Osorio E, Leidy J
- Subjects
diseños maderables ,especificas en seguridad y salud en el trabajo - Abstract
Tuvo sus inicios en el año 1992 en la carrera 9 No. 9-65 como una sociedad entre el señor Uvaner Giraldo (tío) y con Carlos Arturo Giraldo, el primero comerciante por varios años en Medellín, quien por esa época se radicaría en el municipio de Cartago – Valle y quien aportaría el capital para adquirir las máquinas primordiales para el funcionamiento del taller, al igual que la publicidad en Cartago para los primeros contratos; y el señor Carlos Arturo Giraldo aportaría sus conocimientos y su trabajo, la calidad de sus productos para lo que sería el sueño realizado de empezar con su propia Microempresa; en este mismo lugar estuvo durante 18 meses, tiempo en el cual realizaría un buen número de contratos y cada vez se veía la necesidad de adquirir más maquinaria y la contratación de varios empleados como ebanistas, rijadores y Pintores. También se dio la oportunidad de los primeros préstamos con 2 entidades bancarias que le darían más solidez a la Microempresa., 1. Objetivo., 2. Objetivos Específicos., 3. Alcance., 4. Consideraciones generales., 5. Responsabilidades, 6. Anexos., Pregrado, Profesional en Seguridad y Salud en el Trabajo
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- 2016
41. Obesidad y síndrome metabólico en niños y adolescentes
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Le Roy O. Catalina, Osorio E. Jessica, and Castillo-Durán Garlos
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business.industry ,Obesidad ,adolescentes ,General Medicine ,síndrome metabólico ,metabolic syndrome ,children ,Medicine ,Obesity ,adolescents ,business ,Humanities ,niños - Abstract
ResumenLa obesidad general y en niños es un problema de salud pública con claro aumento a nivel mundial y en Chile. En las edades pediátricas, aparte de sus consecuencias traumatológicas, metabólicas y psicológicas, ya tiene un impacto en el riesgo de enfermedades en las edades adultas. El concepto de síndrome metabólico está en uso hace algunos años en la edad adulta, para aunar factores de riesgo de llegar a desarrollar diabetes tipo II y enfermedad cardiovascular. En pediatría hay suficiente evidencia que son factores predictores de riesgo desde la edad escolar la mayoría de los componentes estudiados en adultos: aumento de circunferencia abdominal, de presión arterial sistólica y diastólica, de triglicéridos y disminución de colesterol HDL sérico. Están en estudio otros componentes del síndrome: resistencia insulínica, adiposidad intraabdominal, hiperuricemia, hiperleptinemia, grosor aumentado de íntimamedia arterial, signos sugerentes de hígado graso. Se justifica el estudio de estos factores en niños y adolescentes obesos y su manejo intensivo por un equipo profesional entrenado.SummaryObesity in the general population and in children, is a public health issue increasing worldwide and also in Chile. Besides the orthopedic, metabolic and psychological consequences at the pediatric age group, obesity has an evident long term impact on the risk of disease later in life. The term metabolic syndrome (MS) has been used for adults in the past decades, for combined factors associated with the risk of developing diabetes type II or cardiovascular disease at later ages. There is evidence that most of the components of MS for adults are also applicable in children and adolescents: increased abdominal circumference, increased systolic and diastolic blood pressure, increased triglycerides and decreased cholesterol HDL. Complementary features can be: insulin resistance, fatty liver, increased intraabdominal adiposity, hyperuricemia, increased thickness of arterial intima-media, hyperleptinemia. The assessment of these factors is required for all obese children and adolescents and it must be managed by a well trained professional team.
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- 2012
42. Ardrea characterisation of acidophilic micro-organisms isolated from gold mines in Marmato, Colombia
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Edna Judith Márquez F., Marco Márquez G., and Victor Manuel Osorio E.
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ARNr 16S ,polimorfismos de colonia ,Ardrea ,acidophilic microorganisms ,lcsh:Biotechnology ,lcsh:TP248.13-248.65 ,identificación molecular ,microorganismos acidófilos ,medio sólido doble capa ,molecular identification ,rRNA 16S ,double layer solid medium ,colony polymorphisms - Abstract
Mineral bio-oxidation improves the extraction of valuable metals and also decreases the impact caused by mining waste; however, the interactions between the micro-organisms so involved are little known. Double-layer solid culture media techniques and amplified ribosomal DNA restriction enzyme analysis (Ardrea), using Eco72I, Eco24I, XcmI and BsaAI enzymes, were used for characterising four micro-organisms isolated from gold mines located in Marmato, Colombia. This work was aimed at better understanding of native acidophilic micro-organisms’ microbial interactions in mixed cultures. Iron and sulphur oxidising isolates revealed similar restriction patterns to those previously reported for Acidithiobacillus ferrooxidans; however, one of them exhibited different colony morphology compared to previously reported morphology. The iron non-oxidising isolate presented a restriction pattern agreeing with theoretical analysis of Acidithiobacillus thiooxidans database sequences. ARDREA proved to be a viable technique for differentiating between At. ferrooxidans and At. thiooxidans; in turn, it enabled checking isolates’ identity with their physiological traits and colony morphology.
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- 2008
43. A secondary wave of neutrophil infiltration causes necrosis and ulceration in lesions of experimental American cutaneous leishmaniasis
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Peniche, Alex G., primary, Bonilla, Diana L., additional, Palma, Gloria I., additional, Melby, Peter C., additional, Travi, Bruno L., additional, and Osorio, E. Yaneth, additional
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- 2017
- Full Text
- View/download PDF
44. Prediction of Cardiovascular Disease by the Framingham‐REGICOR Equation in the High‐Risk PREDIMED Cohort: Impact of the Mediterranean Diet Across Different Risk Strata
- Author
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Amor, Antonio J., primary, Serra‐Mir, Mercè, additional, Martínez‐González, Miguel A., additional, Corella, Dolores, additional, Salas‐Salvadó, Jordi, additional, Fitó, Montserrat, additional, Estruch, Ramón, additional, Serra‐Majem, Lluis, additional, Arós, Fernando, additional, Babio, Nancy, additional, Ros, Emilio, additional, Ortega, Emilio, additional, Pérez‐Heras, A., additional, Viñas, C., additional, Casas, R., additional, de Santamaría, L., additional, Romero, S., additional, Sacanella, E., additional, Chiva, G., additional, Valderas, P., additional, Arranz, S., additional, Baena, J. M., additional, García, M., additional, Oller, M., additional, Amat, J., additional, Duaso, I., additional, García, Y., additional, Iglesias, C., additional, Simón, C., additional, Quinzavos, Ll., additional, Parra, Ll., additional, Liroz, M., additional, Benavent, J., additional, Clos, J., additional, Pla, I., additional, Amorós, M., additional, Bonet, M. T., additional, Martin, M. T., additional, Sánchez, M. S., additional, Altirriba, J., additional, Manzano, E., additional, Altés, A., additional, Sala‐Vila, A., additional, Cofán, M., additional, Valls‐Pedret, C., additional, Freitas‐Simoes, T. M., additional, Doménech, M., additional, Gilabert, R., additional, Bargalló, N., additional, Bulló, M., additional, Basora, J., additional, González, R., additional, Díaz‐López, A., additional, Molina, C., additional, Mena, G., additional, Márquez, F., additional, Martínez, P., additional, Ibarrola, N., additional, Sorli, M., additional, García Roselló, J., additional, Martín, F., additional, Tort, N., additional, Isach, A., additional, Salas‐Huetos, A., additional, Becerra‐Tomás, N., additional, Rosique Esteban, N., additional, Cabré, J. J., additional, Mestres, G., additional, Paris, F., additional, Llaurado, M., additional, Pedret, R., additional, Basells, J., additional, Vizcaino, J., additional, Segarra, R., additional, Hernandez‐Alonso, P., additional, Giardina, S., additional, Ferreira‐Pego, C., additional, Papandreou, C., additional, Camacho, L., additional, Toledo, E., additional, Buil‐Cosiales, P., additional, Ruiz‐Canela, M., additional, Martínez, J. A., additional, Sanjulian, B., additional, Sánchez‐Tainta, A., additional, Diez‐Espino, J., additional, Razquin, C., additional, Garcia‐Arellano, A., additional, Goni, E., additional, Vazquez, Z., additional, Berrade, N., additional, Extremera‐Urabayen, V., additional, Eguaras, S., additional, Marti, A., additional, Arroyo‐Azpa, C., additional, García‐Pérez, L., additional, Villanueva Telleria, J., additional, Cortés Ugalde, F., additional, Sagredo Arce, T., additional, de la Noceda Montoy, M. D. García, additional, Vigata López, M. D., additional, Arceiz Campo, M. T., additional, Urtasun Samper, A., additional, Gueto Rubio, M. V., additional, Sola, A., additional, Goñi, N., additional, Lecea, O., additional, Tello, S., additional, Vila, J., additional, de la Torre, R., additional, Muñoz‐Aguayo, D., additional, Elosua, R., additional, Marrugat, J., additional, Schröder, H., additional, Molina, N., additional, Maestre, E., additional, Castañer, O., additional, Rovira, A., additional, Farre, M., additional, Sorli, J. V., additional, Zanon‐Moreno, V., additional, Carrasco, P., additional, Ortega‐Azorín, C., additional, Asensio, E. M., additional, Osma, R., additional, Barragán, R., additional, Francés, F., additional, Guillén, M., additional, González, J. I., additional, Saiz, C., additional, Portolés, O., additional, Giménez, F. J., additional, Coltell, O., additional, Guillem‐Saiz, P., additional, Quiles, L., additional, Pascual, V., additional, Riera, C., additional, Pages, M. A., additional, Godoy, D., additional, Carratala‐Calvo, A., additional, Martín‐Rillo, M. J., additional, Llopis‐Osorio, E., additional, Ruiz‐Baixauli, J., additional, Bertolín‐Muñoz, A., additional, Salaverría, I., additional, del Hierro, T., additional, Algorta, J., additional, Francisco, S., additional, Alonso‐Gómez, A., additional, Sanz, E., additional, Rekondo, J., additional, Bello, M. C., additional, Loma‐Osorio, A., additional, Gómez‐Gracia, E., additional, Warnberg, J., additional, Benítez Pont, R., additional, Bianchi Alba, M., additional, Gómez‐Huelgas, R., additional, Martínez‐González, J., additional, Velasco García, V., additional, de Diego Salas, J., additional, Baca Osorio, A., additional, Gil Zarzosa, J., additional, Sánchez Luque, J. J., additional, Vargas López, E., additional, Ruiz‐Gutiérrez, V., additional, Sánchez Perona, J., additional, Montero Romero, E., additional, García‐García, M., additional, Jurado‐Ruiz, E., additional, Fiol, M., additional, García‐Valdueza, M., additional, Moñino, M., additional, Proenza, A., additional, Prieto, R., additional, Frontera, G., additional, Ginard, M., additional, Fiol, F., additional, Jover, A., additional, Romaguera, D., additional, García, J., additional, Lapetra, J., additional, Santos‐Lozano, J. M., additional, Ortega‐Calvo, M., additional, Mellado, L., additional, Leal, M., additional, Martínez, E., additional, José García, F., additional, Román, P., additional, Iglesias, P., additional, Corchado, Y., additional, Miró, L., additional, Domínguez, C., additional, Lozano, J. M., additional, Mayoral, E., additional, Lamuela‐Raventós, R. M., additional, López‐Sabater, M. C., additional, Castellote‐Bargallo, A. I., additional, Tresserra‐Rimbau, A., additional, Álvarez‐Pérez, J., additional, Díaz‐Benítez, E. M., additional, Bautista Castaño, I., additional, Sánchez‐Villegas, A., additional, Fernández‐Rodríguez, M. J., additional, Casanas Quintana, T., additional, Pérez‐Cabrera, J., additional, Nissensohn, M., additional, Díaz‐González, V., additional, Ruano‐Rodríguez, C., additional, Ortiz‐Andrelluchi, A. P., additional, Macías Gutiérrez, B., additional, Santana‐Santana, A. J., additional, Pintó, X., additional, de la Cruz, E., additional, Galera, A., additional, Soler, Y., additional, Trias, F., additional, Sarasa, I., additional, Padres, E., additional, Corbella, E., additional, Cabezas, C., additional, Vinyoles, E., additional, Rovira, M. A., additional, García, L., additional, Flores, G., additional, Verdú, J. M., additional, Baby, P., additional, Ramos, A., additional, Mengual, L., additional, Roura, P., additional, Yuste, M. C., additional, Guarner, A., additional, Santamaría, M. I., additional, Mata, M., additional, de Juan, C., additional, Brau, A., additional, Tur, J. A., additional, Portillo, M. P., additional, Sáez, G., additional, Aldamiz, M., additional, Alonso, A., additional, Berjón, J., additional, Forga, L., additional, Gallego, J., additional, Larrauri, A., additional, Portu, J., additional, Timiraos, J., additional, and Serrano‐Martínez, M., additional
- Published
- 2017
- Full Text
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45. Transcriptional Profiling in Experimental Visceral Leishmaniasis Reveals a Broad Splenic Inflammatory Environment that Conditions Macrophages toward a Disease-Promoting Phenotype
- Author
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Kong, Fanping, primary, Saldarriaga, Omar A., additional, Spratt, Heidi, additional, Osorio, E. Yaneth, additional, Travi, Bruno L., additional, Luxon, Bruce A., additional, and Melby, Peter C., additional
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- 2017
- Full Text
- View/download PDF
46. Ardrea characterisation of acidophilic micro-organisms isolated from gold mines in Marmato, Colombia Caracterización por Ardrea de microorganismos acidófilos aislados en minas de oro de Marmato, Colombia
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Osorio E. Victor Manuel, Márquez G. Marco, and Márquez F. Edna Judith
- Subjects
ARNr 16S ,polimorfismos de colonia ,Ardrea ,acidophilic microorganisms ,lcsh:Biotechnology ,lcsh:TP248.13-248.65 ,identificación molecular ,microorganismos acidófilos ,medio sólido doble capa ,molecular identification ,rRNA 16S ,double layer solid medium ,colony polymorphisms - Abstract
Mineral bio-oxidation improves the extraction of valuable metals and also decreases the impact caused by mining waste; however, the interactions between the micro-organisms so involved are little known. Double-layer solid culture media techniques and amplified ribosomal DNA restriction enzyme analysis (Ardrea), using Eco72I, Eco24I, XcmI and BsaAI enzymes, were used for characterising four micro-organisms isolated from gold mines located in Marmato, Colombia. This work was aimed at better understanding of native acidophilic micro-organisms’ microbial interactions in mixed cultures. Iron and sulphur oxidising isolates revealed similar restriction patterns to those previously reported for Acidithiobacillus ferrooxidans; however, one of them exhibited different colony morphology compared to previously reported morphology. The iron non-oxidising isolate presented a restriction pattern agreeing with theoretical analysis of Acidithiobacillus thiooxidans database sequences. ARDREA proved to be a viable technique for differentiating between At. ferrooxidans and At. thiooxidans; in turn, it enabled checking isolates’ identity with their physiological traits and colony morphology. La bio-oxidación de minerales mejora la recuperación de metales valiosos y disminuye el impacto negativo causado por los subproductos de las operaciones mineras, pero las interacciones de los microorganismos involucrados son poco conocidas. Con el objeto de avanzar en el estudio de interacciones microbianas de bacterias acidófilas nativas en cultivos mixtos, en este trabajo se utilizó la siembra en medio sólido doble capa y el análisis de enzimas de restricción del ADN ribosomal amplificado (Ardrea) con las enzimas Eco72I, Eco24I, XcmI y BsaAI para caracterizar cuatro aislados tomados de minas de oro de Marmato, Colombia. Los aislados que oxidan hierro y azufre exhibieron patrones de restricción del gen ARNr 16S compatibles con los reportados para Acidithiobacillus ferrooxidans, aunque uno de ellos mostró una morfología de colonia que no ha sido descrita para esta especie; el aislado que oxida azufre mostró un patrón que coincide con el análisis teórico realizado sobre secuencias para Acidithiobacillus thiooxidans incluidas en bases de datos primarias. La técnica Ardrea permitió diferenciar entre At.ferrooxidans y At.thiooxidans, y verificar si la identidad de los aislados correspondía con sus características fisiológicas y la morfología de sus colonias.
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- 2007
47. Influence of multiple adhesive coatings and extended etching time on the bonding effectiveness of self-etch adhesives to dentin
- Author
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ERHARDT ACG, OSORIO R, PROENÇA JP, AGUILERA FA, OSORIO E, TOLEDANO M., BRESCHI, LORENZO, Erhardt, Acg, Osorio, R, Proença, Jp, Aguilera, Fa, Osorio, E, Breschi, Lorenzo, and Toledano, M.
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- 2009
48. Nivel de conocimientos de los obstetras acerca del diagnóstico y tratamiento de la isoinmunización materna. estudio de corte transversal en bogotá (Colombia), 2012-2013
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Molina-Giraldo S., Bautista-Vargas S., Hernández-Martínez S., Rojas-Arias J.L., Acuña-Osorio E., Vásquez-Zapata G.A., and Alfonso-Ayala D.A.
- Subjects
Middle cerebral artery ,Rh isoimmunisation ,reproductive and urinary physiology ,Foetal anaemia ,Foetal placenta doppler - Abstract
Objective: To describe the level of knowledge regarding the diagnosis, treatment and prognosis of maternal isoimmunisation among Gynaecology and Obstetrics specialists, members of ABP (Asociación Bogotana de Perinatología). Materials and methods: Cross-sectional descriptive study. A questionnaire prepared by specialists in Maternal and Foetal Medicine (MFM) was administered between November 2012 and March 2013. Professionals practicing outside the national territory, those who had not practiced over the past ten years, and those who did not provide all the information required were excluded. The tool consisted of 18 questions organized in three domains: socio-demographic characteristics, information about clinical practice, and knowledge of the subject. A descriptive statistical analysis was used. Results: Of the 220 practitioners who were given the questionnaire, 127 (57.7%) completed the survey and were included in the analysis. The cutoff point for the indirect Coombs was correctly identified by 32% of the obstetricians and by 45% of the specialists in MFM. The role of middle cerebral artery velocimetry for the diagnosis of foetal anaemia was recognized by 43% and 62% of obstetricians and specialists in MFM, and 82% and 76%, respectively, would use it for the follow-up of foetuses with anaemia. Only 76% of obstetricians and 66% of MFM specialists recognized the indications for delivering the baby in cases of foetal anaemia, whereas 90% and 97%, respectively, identified the timing for cordocentesis and in utero transfusion. Finally, 37% of obstetricians and 48% of MFM specialists did not recognize the Queenan- Liley curve as an option in cases where there is no access to foetal Doppler. Conclusion: There is an important variability in the level of knowledge among obstetricians and MFM specialists regarding the diagnosis, treatment and follow-up of pregnant women with isoimmunisation. Additional studies are required to characterize the variability in clinical practice regarding the diagnosis and treatment of maternal isoimmunisation in Colombia.
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- 2014
49. Dynamics of the spatial electron density distribution of EUV-induced plasmas
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van der Horst, R. M., Beckers, J., Osorio, E. A., Banine, V. Y., van der Horst, R. M., Beckers, J., Osorio, E. A., and Banine, V. Y.
- Abstract
We studied the temporal evolution of the electron density distribution in a low pressure pulsed plasma induced by high energy extreme ultraviolet (EUV) photons using microwave cavity resonance spectroscopy (MCRS). In principle, MCRS only provides space averaged information about the electron density. However, we demonstrate here the possibility to obtain spatial information by combining multiple resonant modes. It is shown that EUV-induced plasmas, albeit being a rather exotic plasma, can be explained by known plasma physical laws and processes. Two stages of plasma behaviour are observed: first the electron density distribution contracts, after which it expands. It is shown that the contraction is due to cooling of the electrons. The moment when the density distribution starts to expand is related to the inertia of the ions. After tens of microseconds, the electrons reached the wall of the cavity. The speed of this expansion is dependent on the gas pressure and can be divided into two regimes. It is shown that the acoustic dominated regime the expansion speed is independent of the gas pressure and that in the diffusion dominated regime the expansion depends reciprocal on the gas pressure.
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- 2015
50. Transcriptional profiling of the spleen in progressive visceral leishmaniasis reveals mixed expression of type 1 and type 2 cytokine-responsive genes
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Espitia, Claudia M, primary, Saldarriaga, Omar A, additional, Travi, Bruno L, additional, Osorio, E Yaneth, additional, Hernandez, Alvaro, additional, Band, Mark, additional, Patel, Mandakini J, additional, Medina, Audrie A, additional, Cappello, Michael, additional, Pekosz, Andrew, additional, and Melby, Peter C, additional
- Published
- 2014
- Full Text
- View/download PDF
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