11 results on '"Hansmann J"'
Search Results
2. IR spectroscopy vs. Raman scattering by measurement of glucose concentration
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Abdallah, O., Hansmann, J., Bolz, A., and Mertsching, H.
- Abstract
By developing a non-invasive device for glucose concentration measurement, two promising methods were compared for that aim. The Raman scattering using Laser at the wavelength 785 nm and the light scattering in R- and IR-range are demonstrated. An easy accessible and low-cost method for glucose concentration monitoring and management to avoid its complications will be a great help for diabetic patients. Raman Scattering is a promising method for noninvasively measuring of glucose and for the diagnostic of pathological tissue variations. Despite the power and the time of measurement can be reduced using enhanced Raman scattering, it will be difficult to develop a compatible device with low power Laser and low price for a non-invasive method for home monitoring. As using IR-spectroscopy at wavelengths slightly below 10000 nm, the absorption of glucose can be well discriminated from that of water, LED`s or LD´s at these wavelengths are very expensive for this purpose. At wavelengths about 6250 and 7700 glucose has a less light absorption than water. Also slightly above 3000 nm glucose has a high absorption. There are also possibilities for the measurement in the NIR at wavelengths between 1400 nm and 1670 nm. Scattering measurements at wavelengths below 900 nm and our measurements with the wavelength about 640 nm give reproducible glucose dependence on the reflected light from a glucose solution at a constant temperature. A multi-sensor with different wavelengths and temperature sensor will be a good choice for in-vivo glucose monitoring.
- Published
- 2010
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3. Radiation Dose Reduction in Chest Radiography using a Flat-Panel Amorphous Silicon Detector
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Hosch, W.P, Fink, C, Radeleff, B, Kampschulte, A, Kauffmann, G.W, and Hansmann, J
- Abstract
AIM: The aim of this study was to evaluate the image quality and the potential for radiation dose reduction with a digital flat-panel amorphous silicon detector radiography system. MATERIAL AND METHODS: Using flat-panel technology, radiographs of an anthropomorphic thorax phantom were taken with a range of technical parameters (125kV, 200mA and 5, 4, 3.2, 2, 1, 0.5, and 0.25mAs) which were equivalent to a radiation dose of 332, 263, 209, 127, 58.7, 29, and 14μGy, respectively. These images were compared to radiographs obtained by a conventional film-screen radiography system at 125kV, 200mA and 5mAs (equivalent to 252μGy) which served as reference. Three observers evaluated independently the visibility of simulated rounded lesions and anatomical structures, comparing printed films from the flat-panel amorphous silicon detector and conventional x-ray system films. RESULTS: With flat-panel technology, the visibility of rounded lesions and normal anatomical structures at 5, 4, and 3.2mAs was superior compared to the conventional film-screen radiography system. (P⩽0.0001). At 2mAs, improvement was only marginal (P=0.19). At 1.0, 0.5 and 0.25mAs, the visibility of simulated rounded lesions was worse (P⩽0.004). Comparing fine lung parenchymal structures, the flat-panel amorphous silicon detector showed improvement for all exposure levels down to 2mAs and equality at 1mAs. CONCLUSION: Compared to a conventional x-ray film system, the flat-panel amorphous silicon detector demonstrated improved image quality and the possibility for a reduction of the radiation dose by 50% without loss in image quality. Hosch, W. P. etal. (2002). Clinical Radiology57, 902–907.
- Published
- 2002
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4. Restoration of Liver Function and Portosystemic Pressure Gradient after TIPSS and Late TIPSS Occlusion
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Maedler, U., Hansmann, J., Duex, M., Noeldge, G., Sauer, P., and Richter, G.M.
- Abstract
TIPSS (transjugular intrahepatic portosystemic shunt) may be indicated to control bleeding from esophageal and gastric varicose veins, to reduce ascites, and to treat patients with Budd-Chiari syndrome and veno-occlusive disease. Numerous measures to improve the safety and methodology of the procedure have helped to increase the technical and clinical success. Follow-up of TIPSS patients has revealed shunt stenosis to occur more often in patients with preserved liver function (Child A, Child B). In addition, the extent of liver cirrhosis is the main factor that determines prognosis in the long term. Little is known about the effects of TIPSS with respect to portosystemic hemodynamics. This report deals with a cirrhotic patient who stopped drinking 7 months prior to admission. He received TIPSS to control ascites and recurrent esophageal bleeding. Two years later remarkable hypertrophy of the left liver lobe and shunt occlusion was observed. The portosystemic pressure gradient dropped from 24 mmHg before TIPSS to 11 mmHg and remained stable after shunt occlusion. The Child's B cirrhosis prior to TIPSS turned into Child's A cirrhosis and remained stable during the follow-up period of 32 months. This indicates that liver function of TIPSS patients may recover due to hypertrophy of the remaining non-cirrhotic liver tissue. In addition the hepatic hemodynamics may return to normal. In conclusion, TIPSS cannot cure cirrhosis but its progress may be halted if the cause can be removed. This may result in a normal portosystemic gradient, leading consequently to shunt occlusion.
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- 2002
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5. Endoscopic Variceal Ligation plus Propranolol vs. Transjugular Intrahepatic Portosystemic Stent Shunt: A Long-Term Randomized Trial
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Sauer, P., Hansmann, J., Richter, G. M., Stremmel, W., and Stiehl, A.
- Published
- 2002
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6. Bildgebende Diagnostik der Kolondivertikulose und ihrer Komplikationen
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Nöldge, G., Hansmann, J., Leutloff, U., Richter, G.M., and Kauffmann, G.W.
- Abstract
Imaging Diagnostics of Colonic Diverticulosis and Its ComplicationsRadiodiagnostic imaging modalities in diverticulosis and diverticulitis for visualization of complications include supine radiograph of the abdomen, ultrasonography, barium studies of the colon, in case of diverticulitis and suspicion of penetration only water-soluble contrast medium studies, spiral-CT and magnetic resonance imaging (MRI). In cases of endoscopic failure to localize diverticular bleedings because of massive intraluminal blood clots, selective and superselective angiography is indicated for localization of the bleeding source and, if necessary, transcatheter embolization or vasopressin infusion to stop the bleeding. In endoscopical failure to pass the stenosis of inflammatory origin because of diverticulitis, only water-soluble contrast medium studies are indicated, mainly to visualize the post-stenotic areas of the colon orally to the stenosis. In cases of penetration or suspected perforation, fistulas in surrounding organ structures like adjacent bowel loops, urinary bladder or muscle tissue, ultrasound or spiral-CT are the favorite imaging modalities. Up to now, MRI does not play the role as ultrasound or spiral-CT do.
- Published
- 2000
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7. A decellularized human bone scaffold under dynamic incubation as model of the skeletal progenitor cell niche
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Pereira, R, Batani, J, Ehlicke, F, Schürlein, S, Hansmann, J, Rudert, M, and Herrmann, M
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- 2020
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8. 553 Complex skin models and impedance spectroscopy as new tools for dermatological research
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Groeber, F.K., Engelhardt, L., Le Varlet, B., De Wever, B., Walles, H., and Hansmann, J.
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- 2016
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9. Perforation of the esophagus after dilation treatment for dysphagia in a patient with eosinophilic esophagitis
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Eisenbach, C., Merle, U., Schirmacher, P., Hansmann, J., Stiehl, A., Stremmel, W., and Kulaksiz, H.
- Published
- 2006
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10. Poster session Thursday 12 December - PM: 12/12/2013, 14:00-18:00 * Location: Poster area
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Garcia Martin, A, Fernandez Golfin, C, Salido Tahoces, L, Fernandez Santos, S, Jimenez Nacher, JJ, Moya Mur, JL, Velasco Valdazo, E, Hernandez Antolin, R, Zamorano Gomez, JL, Veronesi, F, Corsi, C, Caiani, EG, Lamberti, C, Tsang, W, Holmgren, C, Guo, X, Bateman, M, Iaizzo, P, Vannier, M, Lang, RM, Patel, AR, Adamayn, KG, Tumasyan, L R, Chilingaryan, AL, Nasr, G, Eleraki, A, Farouk, N, Axelsson, A, Langhoff, L, Jensen, MK, Vejlstrup, N, Iversen, K, Bundgaard, H, Watanabe, T, Iwai-Takano, M, Attenhofer Jost, C H, Pfyffer, M, Seifert, B, Scharf, C, Candinas, R, Medeiros-Domingo, A, Chin, J-Y, Yoon, HJ, Vollbon, W, Singbal, Y, Rhodes, K, Wahi, S, Katova, T M, Simova, I I, Hristova, K, Kostova, V, Pauncheva, B, Bircan, A, Sade, LE, Eroglu, S, Pirat, B, Okyay, K, Bal, U, Muderrisoglu, H, Heggemann, F, Buggisch, H, Welzel, G, Doesch, C, Hansmann, J, Schoenberg, S, Borggrefe, M, Wenz, F, Papavassiliu, T, Lohr, F, Roussin, I, Drakopoulou, M, Rosen, S, Sharma, R, Prasad, S, Lyon, AR, Carpenter, JP, Senior, R, Breithardt, O-A, Razavi, H, Arya, A, Nabutovsky, Y, Ryu, K, Gaspar, T, Kosiuk, J, Eitel, C, Hindricks, G, Piorkowski, C, Pires, S, Nunes, A, Cortez-Dias, N, Belo, A, Zimbarra Cabrita, I, Sousa, C, Pinto, F, Baron, T, Johansson, K, Flachskampf, FA, Christersson, C, Pires, S, Cortez-Dias, N, Nunes, A, Belo, A, Zimbarra Cabrita, I, Sousa, C, Pinto, F, Santoro, A, Federico Alvino, FA, Giovanni Antonelli, GA, Raffaella De Vito, RDV, Roberta Molle, RM, Sergio Mondillo, SM, Gustafsson, M, Alehagen, U, Johansson, P, Tsukishiro, Y, Onishi, T, Chimura, M, Yamada, S, Taniguchi, Y, Yasaka, Y, Kawai, H, Souza, J R M, Zacharias, L G T, Pithon, K R, Ozahata, T M, Cliquet, A JR, Blotta, M H, Nadruz, W JR, Fabiani, I, Conte, L, Cuono, C, Liga, R, Giannini, C, Barletta, V, Nardi, C, Delle Donne, MG, Palagi, C, Di Bello, V, Glaveckaite, S, Valeviciene, N, Palionis, D, Laucevicius, A, Hristova, K, Bogdanova, V, Ferferieva, V, Shiue, I, Castellon, X, Boles, U, Rakhit, R, Shiu, M F, Gilbert, T, Papachristidis, A, Henein, M Y, Westholm, C, Johnson, J, Jernberg, T, Winter, R, Ghosh Dastidar, A, Augustine, D, Cengarle, M, Mcalindon, E, Bucciarelli-Ducci, C, Nightingale, A, Onishi, T, Watanabe, T, Fujita, M, Mizukami, Y, Sakata, Y, Nakatani, S, Nanto, S, Uematsu, M, Saraste, A, Luotolahti, M, Varis, A, Vasankari, T, Tunturi, S, Taittonen, M, Rautakorpi, P, Airaksinen, J, Ukkonen, H, Knuuti, J, Boshchenko, A, Vrublevsky, A, Karpov, R, Yoshikawa, H, Suzuki, M, Hashimoto, G, Kusunose, Y, Otsuka, T, Nakamura, M, Sugi, K, Rosner, SJ, Orban, M, Lesevic, H, Karl, M, Hadamitzky, M, Sonne, C, Panaro, A, Martinez, F, Huguet, M, Moral, S, Palet, J, Oller, G, Cuso, I, Jornet, A, Rodriguez Palomares, J, Evangelista, A, Stoebe, S, Tarr, A, Pfeiffer, D, Hagendorff, A, Gilmanov, DSH, Baroni, MB, Cerone, EC, Galli, EG, Berti, SB, Glauber, MG, Soesanto, A, Yuniadi, Y, Mansyur, M, Kusmana, D, Venkateshvaran, A, Dash, P K, Sola, S, Govind, S C, Shahgaldi, K, Winter, R, Brodin, L A, Manouras, A, Dokainish, H, Sadreddini, M, Nieuwlaat, R, Lonn, E, Healey, J, Nguyen, V, Cimadevilla, C, Dreyfus, J, Codogno, I, Vahanian, A, Messika-Zeitoun, D, Lim, Y-J, Kawamura, A, Kawano, S, Polte, CL, Gao, S, Lagerstrand, KM, Cederbom, U, Bech-Hanssen, O, Baum, J, Beeres, F, Van Hall, S, Boering, YC, Zeus, T, Kehmeier, ES, Kelm, M, Balzer, JC, Della Mattia, A, Pinamonti, B, Abate, E, Nicolosi, GL, Proclemer, A, Bassetti, M, Luzzati, R, Sinagra, G, Hlubocka, Z, Jiratova, K, Dostalova, G, Hlubocky, J, Dohnalova, A, Linhart, A, Palecek, T, Sonne, C, Lesevic, H, Karl, M, Rosner, S, Hadamitzky, M, Ott, I, Malev, E, Reeva, S, Zemtsovsky, E, Igual Munoz, B, Alonso Fernandez Pau, PAF, Miro Palau Vicente, VMP, Maceira Gonzalez Alicia, AMG, Estornell Erill, JEE, Andres La Huerta, AALH, Donate Bertolin, LDB, Valera Martinez, FVM, Salvador Sanz Antonio, ASS, Montero Argudo Anastasio, AMA, Nemes, A, Kalapos, A, Domsik, P, Chadaide, S, Sepp, R, Forster, T, Onaindia, JJ, Arana, X, Cacicedo, A, Velasco, S, Rodriguez, I, Capelastegui, A, Sadaba, M, Gonzalez, J, Salcedo, A, Laraudogoitia, E, Archontakis, S, Gatzoulis, K, Vlasseros, I, Arsenos, P, Tsiachris, D, Vouliotis, A, Sideris, S, Karistinos, G, Kalikazaros, I, Stefanadis, C, Ancona, R, Comenale Pinto, S, Caso, P, Coppola, MG, Arenga, F, Cavallaro, C, Vecchione, F, Donofrio, A, Calabro, R, Correia, C E, Moreira, D, Cabral, C, Santos, JO, Cardoso, JS, Igual Munoz, B, Maceira Gonzalez, AMG, Estornell Erill Jordi, JEE, Jimenez Carreno, RJC, Arnau Vives, MAV, Monmeneu Menadas, JVMM, Domingo-Valero, DDV, Sanchez Fernandez, ESF, Montero Argudo Anastasio, AMA, Zorio Grima, EZG, Cincin, A, Tigen, K, Karaahmet, T, Dundar, C, Sunbul, M, Guler, A, Bulut, M, Basaran, Y, Mordi, I, Carrick, D, Berry, C, Tzemos, N, Cruz, I, Ferreira, A, Rocha Lopes, L, Joao, I, Almeida, AR, Fazendas, P, Cotrim, C, Pereira, H, Ochoa, J P, Fernandez, A, Filipuzzi, JM, Casabe, JH, Salmo, JF, Vaisbuj, F, Ganum, G, Di Nunzio, HJ, Veron, LF, Guevara, E, Salemi, VMC, Nerbass, FB, Portilho, N, Ferreira Filho, JCA, Pedrosa, RP, Arteaga-Fernandez, E, Mady, C, Drager, LF, Lorenzi-Filho, G, Marques, JS, Almeida, A M G, Menezes, M, Silva, GL, Placido, R, Amaro, C, Brito, D, Diogo, AN, Lourenco, M R, Azevedo, O, Moutinho, J, Nogueira, I, Machado, I, Portugues, J, Quelhas, I, Lourenco, A, Calore, C, Muraru, D, Melacini, P, Badano, LP, Mihaila, S, Puma, L, Peluso, D, Casablanca, S, Ortile, A, Iliceto, S, Kang, M-K, Yu, SH, Park, JJ, Kim, SH, Park, TY, Mun, H-S, C, S, Cho, S-R, Han, SW, Lee, N, Khalifa, E A, Hamodraka, E, Kallistratos, M, Zacharopoulou, I, Kouremenos, N, Mavropoulos, D, Tsoukas, A, Kontogiannis, N, Papanikolaou, N, Tsoukanas, K, Manolis, A, Villagraz Tecedor, L, Jimenez Lopez Guarch, C, Alonso Chaterina, S, Blazquez Arrollo, L, Lopez Melgar, B, Veitia Sarmiento, AL, Mayordomo Gomez, S, Escribano Subias, MP, Lichodziejewska, B, Kurnicka, K, Goliszek, S, Dzikowska Diduch, O, Kostrubiec, M, Krupa, M, Grudzka, K, Ciurzynski, M, Palczewski, P, Pruszczyk, P, Sakata, K, Ishiguro, M, Kimura, G, Uesugo, Y, Takemoto, K, Minamishima, T, Futuya, M, Matsue, S, Satoh, T, Yoshino, H, Signorello, MC, Gianturco, L, Colombo, C, Stella, D, Atzeni, F, Boccassini, L, Sarzi-Puttini, PC, Turiel, M, Kinova, E, Deliiska, B, Krivoshiev, S, Goudev, A, De Stefano, F, Santoro, C, Buonauro, A, Schiano-Lomoriello, V, Muscariello, R, De Palma, D, Galderisi, M, Ranganadha Babu, B, Chidambaram, SUNDAR, Sangareddi, V, Dhandapani, VE, Ravi, MS, Meenakshi, K, Muthukumar, D, Swaminathan, N, Ravishankar, G, Bruno, R M, Giardini, G, Catizzo, B, Brustia, R, Malacrida, S, Armenia, S, Cauchy, E, Pratali, L, Resamont2, Cesana, F, Alloni, M, Vallerio, P, De Chiara, B, Musca, F, Belli, O, Ricotta, R, Siena, S, Moreo, A, Giannattasio, C, Magnino, C, Omede, P, Avenatti, E, Presutti, D, Sabia, L, Moretti, C, Bucca, C, Gaita, F, Veglio, F, Milan, A, Eichhorn, JG, Springer, W, Helling, A, Alarajab, A, Loukanov, T, Ikeda, M, Kijima, Y, Akagi, T, Toh, N, Oe, H, Nakagawa, K, Tanabe, Y, Watanabe, N, Ito, H, Hascoet, S, Hadeed, K, Marchal, P, Bennadji, A, Peyre, M, Dulac, Y, Heitz, F, Alacoque, X, Chausseray, G, Acar, P, Kong, WILL, Ling, LH, Yip, JAMES, Poh, KK, Vassiliou, V, Rekhraj, S, Hoole, SP, Watkinson, O, Kydd, A, Boyd, J, Mcnab, D, Densem, C, Shapiro, LM, Rana, BS, Potpara, TS, Djikic, D, Polovina, M, Marcetic, Z, Peric, V, Lip, GYH, Gaudron, P, Niemann, M, Herrmann, S, Hu, K, Strotmann, J, Beer, M, Bijnens, B, Liu, D, Ertl, G, Weidemann, F, Peric, V, Jovanovic, A, Djikic, D, Otasevic, P, Kochanowski, J, Piatkowski, R, Scislo, P, Grabowski, M, Marchel, M, Opolski, G, Bandera, F, Guazzi, M, Arena, R, Corra, U, Ghio, S, Forfia, P, Rossi, A, Dini, F, Cahalin, LP, Temporelli, L, Rallidis, L, Tsangaris, I, Makavos, G, Anthi, A, Pappas, A, Orfanos, S, Lekakis, J, Anastasiou-Nana, M, Kuznetsov, V A, Krinochkin, D V, Yaroslavskaya, E I, Zaharova, E H, Pushkarev, G S, Mizia-Stec, K, Wita, K, Mizia, M, Loboz-Grudzien, K, Szwed, H, Kowalik, I, Kukulski, T, Gosciniak, P, Kasprzak, J, Plonska-Gosciniak, E, Cimino, S, Pedrizzetti, G, Tonti, G, Cicogna, F, Petronilli, V, De Luca, L, Iacoboni, C, Agati, L, Hoffmann, R, Barletta, G, Von Bardeleben, S, Kasprzak, J, Greis, C, Vanoverschelde, J, Becher, H, Galrinho, A, Moura Branco, L, Fiarresga, A, Cacela, D, Ramos, R, Cruz Ferreira, R, Van Den Oord, SCH, Akkus, Z, Bosch, JG, Renaud, G, Sijbrands, EJG, Verhagen, HJM, Van Der Lugt, A, Van Der Steen, AFW, Schinkel, AFL, Mordi, I, Tzemos, N, Stanton, T, Delgado, D, Yu, E, Drakopoulou, M, Gonzalez-Gonzalez, AM, Karonis, T, Roussin, I, Babu-Narayan, S, Swan, L, Senior, R, Li, W, Parisi, V, Pagano, G, Pellegrino, T, Femminella, GD, De Lucia, C, Formisano, R, Cuocolo, A, Perrone Filardi, P, Leosco, D, Rengo, G, Unlu, S, Farsalinos, K, Amelot, K, Daraban, A, Ciarka, A, Delcroix, M, Voigt, JU, Miskovic, A, Poerner, TD, Goebel, B, Stiller, CH, Moritz, A, Sakata, K, Uesugo, Y, Kimura, G, Ishiguro, M, Takemoto, K, Minamishima, T, Futuya, M, Satoh, T, Yoshino, H, Miyoshi, T, Tanaka, H, Kaneko, A, Matsumoto, K, Imanishi, J, Motoji, Y, Mochizuki, Y, Minami, H, Kawai, H, Hirata, K, Wutthimanop, A, See, O, Vathesathokit, P, Yamwong, S, Sritara, P, Rosner, A, Kildal, AB, Stenberg, TA, Myrmel, T, How, OJ, Capriolo, M, Frea, S, Giustetto, C, Scrocco, C, Benedetto, S, Grosso Marra, W, Morello, M, Gaita, F, Garcia-Gonzalez, P, Cozar-Santiago, P, Chacon-Hernandez, N, Ferrando-Beltran, M, Fabregat-Andres, O, De La Espriella-Juan, R, Fontane-Martinez, C, Jurado-Sanchez, R, Morell-Cabedo, S, Ridocci-Soriano, F, Mihaila, S, Piasentini, E, Muraru, D, Peluso, D, Casablanca, S, Puma, L, Naso, P, Iliceto, S, Vinereanu, D, Badano, LP, Tarzia, P, Villano, A, Figliozzi, S, Russo, G, Parrinello, R, Lamendola, P, Sestito, A, Lanza, GA, Crea, F, Sulemane, S, Panoulas, VF, Bratsas, A, Frankel, AH, Nihoyannopoulos, P, Dores, H, Andrade, MJ, Almeida, MS, Goncalves, PA, Branco, P, Gaspar, A, Gomes, A, Horta, E, Carvalho, MS, Mendes, M, Yue, WS, Li, XY, Chen, Y, Luo, Y, Gu, P, Yiu, KH, Siu, CW, Tse, HF, Cho, EJ, Lee, SH, Hwang, BH, Kim, DB, Jang, SW, Jeon, HK, Youn, HJ, and Kim, JH
- Abstract
Background: Progress in the technique of TAVR requires good knowledge of the aortic root. With this aim new specialized software appears, with the ability of automated quantitative modeling of the AV and root from 3D TEE.The purpose of this study was to validate this model with the measurements made manually. Methods: Eight patients undergoing TAVR in our center where included. The diameters of the aortic annulus, sinotubular union (STU) and sinus of valsalva (SV) were measured by 2D TEE; diameters and areas of aortic annulus, STU and SV as well as anatomic aortic valve area were measured by 3D TEE. Afterwards, the images were analyzed using the new software (Figure 1). Results. We showed good correlation with aortic annulus diameter measured by 2D TEE (r:,832 p:,01) and excellent correlation with one of the aortic annulus diameter measured by 3D TEE (r:,941 p:,00). The same happened with the area (r:,720 p:,04). Regarding the measurements at SV level, the correlations between the diameters by 2D TEE and 3D TEE with the measurements obtained with the new model were the following (r:,771;p:,025) and (r:,797;p:,018). The correlation of the area was also good (r:,812 p:,014).An excellent correlation was found between the measurements at UST level. UST diameter by 2D TEE (r:,818;P:,013), by ETE3D (r:,800;p:,017) and area (r:,844;p:,008).Finally, the anatomic aortic valve area measured by the new model showed significant correlation with the 3D TTE (r:,830 p:,011). Conclusions. There is a proper correlation between manual and automated measurements analyzed by the new model. The feasibility of determine the TAVR results with geometric models based on image, prior to procedure, is one of the possibilities of this new software. Prospective studies are necessary to define its applicability.
Figure 1 - Published
- 2013
- Full Text
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11. Analyse de livre
- Author
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Moeder-Saurfelt, Cl., Jenny, J., and Hansmann, J.
- Published
- 1995
- Full Text
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