Journal articles on the topic 'Swine Animal Model'
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LELOVAS (Π. ΛΕΛΟΒΑΣ), P., K. MARINOU (Κ. ΜΑΡΙΝΟΥ), Th XANTHOS (Θ. ΞΑΝΘΟΣ), D. PAPADIMITRIOU (Δ. ΠΑΠΑΔΗΜΗΤΡΙΟΥ), D. PERREA (Δ. ΠΕΡΡΕΑ), and I. DONTAS (Ι. ΔΟΝΤΑ). "Swine as an animal model of cardiopulmonary resuscitation." Journal of the Hellenic Veterinary Medical Society 57, no. 1 (2017): 27. http://dx.doi.org/10.12681/jhvms.15007.
Full textYoganandan, Narayan, Alok Shah, Jamie Baisden, et al. "Matched-pair hybrid test paradigm for behind armor blunt trauma using an experimental animal model." Trauma Surgery & Acute Care Open 9, no. 1 (2024): e001194. http://dx.doi.org/10.1136/tsaco-2023-001194.
Full textHuang, Christene A., Yasushi Fuchimoto, Zachary L. Gleit, et al. "Posttransplantation lymphoproliferative disease in miniature swine after allogeneic hematopoietic cell transplantation: similarity to human PTLD and association with a porcine gammaherpesvirus." Blood 97, no. 5 (2001): 1467–73. http://dx.doi.org/10.1182/blood.v97.5.1467.
Full textXANTHOS (Θ. ΞΑΝΘΟΣ), Th. "Swine model in cardiopulmonary resuscitation research." Journal of the Hellenic Veterinary Medical Society 60, no. 3 (2017): 254. http://dx.doi.org/10.12681/jhvms.14935.
Full textNavarro-Alvarez, Nalú, Beatriz M. M. Gonçalves, Alec R. Andrews, David H. Sachs, and Christene A. Huang. "A CFA-Induced Model of Inflammatory Skin Disease in Miniature Swine." International Journal of Inflammation 2018 (June 24, 2018): 1–8. http://dx.doi.org/10.1155/2018/6916920.
Full textGuo, Xiaomei, Bhavesh Patel, Ling Han, et al. "Novel swine model of colonic diverticulosis." American Journal of Physiology-Gastrointestinal and Liver Physiology 317, no. 1 (2019): G51—G56. http://dx.doi.org/10.1152/ajpgi.00408.2018.
Full textKUDO, Hideyuki, Motoyuki KATAOKA, Hiroshi IRIE, et al. "Acceleration of Atherogenesis in Hyperinsulinemic Miniature Swine Animal Model." Journal of Japan Atherosclerosis Society 24, no. 10 (1997): 501–4. http://dx.doi.org/10.5551/jat1973.24.10_501.
Full textZhang, Zhang, Shigeho Takarada, and Sabee Molloi. "Assessment of coronary microcirculation in a swine animal model." American Journal of Physiology-Heart and Circulatory Physiology 301, no. 2 (2011): H402—H408. http://dx.doi.org/10.1152/ajpheart.00213.2011.
Full textMisfeldt, M. L., and D. R. Grimm. "Sinclair miniature swine: an animal model of human melanoma." Veterinary Immunology and Immunopathology 43, no. 1-3 (1994): 167–75. http://dx.doi.org/10.1016/0165-2427(94)90133-3.
Full textMicsa, C., D. Togoe, V. A. Dutulescu, et al. "Training in laparoscopic biliary procedures in swine animal model." Journal of Biotechnology 305 (November 2019): S82. http://dx.doi.org/10.1016/j.jbiotec.2019.05.283.
Full textZhao, Huihui, Jianxin Chen, Qi Shi, et al. "Metabolomics-Based Study of Clinical and Animal Plasma Samples in Coronary Heart Disease with Blood Stasis Syndrome." Evidence-Based Complementary and Alternative Medicine 2012 (2012): 1–6. http://dx.doi.org/10.1155/2012/638723.
Full textKőrösi, Dénes, András Vorobcsuk, Dániel Fajtai, Ottó Tátrai, Emőke Bodor, and Rita Garamvölgyi. "Closed-chest occlusion of the left anterior descending artery in swine infarction model." Acta Agraria Kaposváriensis 27, no. 1-2 (2023): 77–85. http://dx.doi.org/10.31914/aak.3423.
Full textSreenivasan, Chithra, Milton Thomas, Zizhang Sheng, et al. "Replication and Transmission of the Novel Bovine Influenza D Virus in a Guinea Pig Model." Journal of Virology 89, no. 23 (2015): 11990–2001. http://dx.doi.org/10.1128/jvi.01630-15.
Full textJogler, Christian, Dennis Hoffmann, Dirk Theegarten, Thomas Grunwald, Klaus Überla, and Oliver Wildner. "Replication Properties of Human Adenovirus In Vivo and in Cultures of Primary Cells from Different Animal Species." Journal of Virology 80, no. 7 (2006): 3549–58. http://dx.doi.org/10.1128/jvi.80.7.3549-3558.2006.
Full textXANTHOS (Θ. ΞΑΝΘΟΣ), T., E. BASSIAKOU (Ε. ΜΠΑΣΙΑΚΟΥ), D. PAPADIMITRIOU (Δ. ΠΑΠΑΔΗΜΗΤΡΙΟΥ), E. KOUDOUNA (Ε. ΚΟΥΔΟΥΝΑ), P. LELOVAS (Π. ΛΕΛΟΒΑΣ), and L. PAPADIMITRIOU (Λ. ΠΑΠΑΔΗΜΗΤΡΙΟΥ). "Cardiopulmonary resuscitation in a swine model of cardiac arrest." Journal of the Hellenic Veterinary Medical Society 58, no. 3 (2017): 232. http://dx.doi.org/10.12681/jhvms.14988.
Full textHelm, Ricki M., and A. Wesley Burks. "Sensitization and Allergic Response and Intervention Therapy in Animal Models." Journal of AOAC INTERNATIONAL 87, no. 6 (2004): 1441–47. http://dx.doi.org/10.1093/jaoac/87.6.1441.
Full textNIELSEN, J. P., T. S. LARSEN, T. HALASA, and L. E. CHRISTIANSEN. "Estimation of the transmission dynamics of African swine fever virus within a swine house." Epidemiology and Infection 145, no. 13 (2017): 2787–96. http://dx.doi.org/10.1017/s0950268817001613.
Full textSiegel, Julianne, and Ron Kolata. "Endometriosis Model Development in Swine." Lab Animal 32, no. 4 (2003): 41–45. http://dx.doi.org/10.1038/laban0403-41.
Full textRamirez, Brett C., Guoming Li, Yijie Xiong, Robert T. Burns, and Richard S. Gates. "Evaluating Draft EPA Swine Emission Models – Part I: Facilities." Journal of the ASABE 68, no. 2 (2025): 267–84. https://doi.org/10.13031/ja.16204.
Full textGómez-Segura, Lidia, Antoni Boix-Montañes, Mireia Mallandrich, et al. "Swine as the Animal Model for Testing New Formulations of Anti-Inflammatory Drugs: Carprofen Pharmacokinetics and Bioavailability of the Intramuscular Route." Pharmaceutics 14, no. 5 (2022): 1045. http://dx.doi.org/10.3390/pharmaceutics14051045.
Full textHu, Yaguan, and Yanli Yu. "Scale Difference from the Impact of Disease Control on Pig Production Efficiency." Animals 12, no. 19 (2022): 2647. http://dx.doi.org/10.3390/ani12192647.
Full textTaiyeb, Ahmed M., Saeeda A. Muhsen-Alanssari, Duane C. Kraemer, Olivia Ash, Virginia Fajt, and Mundhir T. Ridha-Albarzanchi. "Cilostazol blocks pregnancy in naturally cycling swine: An animal model." Life Sciences 142 (December 2015): 92–96. http://dx.doi.org/10.1016/j.lfs.2015.10.017.
Full textHolanda, Mônica Calixto Ribeiro de, Marco Aurélio Carneiro de Holanda, and Leandro Ricardo Rodrigues de Lucena. "Relation between swine weight and morphometric measurements." Research, Society and Development 9, no. 9 (2020): e891998013. http://dx.doi.org/10.33448/rsd-v9i9.8013.
Full textHanBayer, Junjie. "316 Awardee Talk: Development and Assessment of Predictive Models for Improved Swine Farming." Journal of Animal Science 101, Supplement_2 (2023): 22–23. http://dx.doi.org/10.1093/jas/skad341.024.
Full textRudar, Marko, Marta L. Fiorotto, and Teresa A. Davis. "Regulation of Muscle Growth in Early Postnatal Life in a Swine Model." Annual Review of Animal Biosciences 7, no. 1 (2019): 309–35. http://dx.doi.org/10.1146/annurev-animal-020518-115130.
Full textHernandez-Torres, Sofia I., Emily N. Boice, and Eric J. Snider. "Using an Ultrasound Tissue Phantom Model for Hybrid Training of Deep Learning Models for Shrapnel Detection." Journal of Imaging 8, no. 10 (2022): 270. http://dx.doi.org/10.3390/jimaging8100270.
Full textGory, B., D. Bresson, A. Rouchaud, C. Yardin, and C. Mounayer. "A Novel Swine Model to Evaluate Arterial Vessel Injury after Mechanical Endovascular Thrombectomy." Interventional Neuroradiology 19, no. 2 (2013): 147–52. http://dx.doi.org/10.1177/159101991301900201.
Full textWalters, Eric M., Melissa S. Samuel, Kevin D. Wells, Lela K. Riley, and Randall S. Prather. "THE PIG AS A BIOMEDICAL MODEL: HOW THE NATIONAL SWINE RESOURCE AND RESEARCH CENTER CAN HELP YOU." Reproduction, Fertility and Development 24, no. 1 (2012): 284. http://dx.doi.org/10.1071/rdv24n1ab242.
Full textZhang, J. J., X. K. Meng, C. Dong, et al. "Development of a New Animal Model of Liver Cirrhosis in Swine." European Surgical Research 42, no. 1 (2009): 35–39. http://dx.doi.org/10.1159/000167855.
Full textYamada, Kazuhiko, Pierre R. Gianello, Francesco L. Ierino, et al. "Role of the Thymus in Transplantation Tolerance in Miniature Swine. I. Requirement of the Thymus for Rapid and Stable Induction of Tolerance to Class I–mismatched Renal Allografts." Journal of Experimental Medicine 186, no. 4 (1997): 497–506. http://dx.doi.org/10.1084/jem.186.4.497.
Full textKolczewski, P., M. Barwijuk, M. Parafiniuk, et al. "Noninvasive bipolar radiofrequency - vaginal application on swine model." Journal of Applied Cosmetology 42, no. 1 (2024): 22/39. http://dx.doi.org/10.56609/jac.v42i1.340.
Full textAndrade, Almir Ferreira de, Matheus Schmidt Soares, Gustavo Cartaxo Patriota, et al. "Experimental model of intracranial hypertension with continuous multiparametric monitoring in swine." Arquivos de Neuro-Psiquiatria 71, no. 10 (2013): 802–6. http://dx.doi.org/10.1590/0004-282x20130126.
Full textBae, Kyoung-Hee, Sang Hyun Park, Byung-Cheon Lee, et al. "Novel Threadlike Structures May Be Present on the Large Animal Organ Surface: Evidence in Swine Model." Evidence-Based Complementary and Alternative Medicine 2013 (2013): 1–5. http://dx.doi.org/10.1155/2013/758763.
Full textYang, Qihui, Beatriz Martínez-López, Sifat Afroj Moon, Jose Pablo Gomez-Vazquez, and Caterina Scoglio. "Animal movement estimation and network-based epidemic modeling: Illustration for the swine industry in Iowa (US)." PLOS One 20, no. 6 (2025): e0326234. https://doi.org/10.1371/journal.pone.0326234.
Full textDzięgiel, Natalia, Paulina Szczurek, Jacek Jura, and Marek Pieszka. "The pig as an animal model in biomedical research: A review." Postępy Higieny i Medycyny Doświadczalnej 72 (December 11, 2018): 1032–42. http://dx.doi.org/10.5604/01.3001.0012.7815.
Full textReynolds, Penny S., Jacquelyn McCarter, Christopher Sweeney, et al. "Informing efficient pilot development of animal trauma models through quality improvement strategies." Laboratory Animals 53, no. 4 (2018): 394–404. http://dx.doi.org/10.1177/0023677218802999.
Full textCraig, B. A., and A. P. Schinckel. "Nonlinear Mixed Effects Model for Swine Growth." Professional Animal Scientist 17, no. 4 (2001): 256–60. http://dx.doi.org/10.15232/s1080-7446(15)31637-5.
Full textGong, Joshua, and Chengbo Yang. "396 Gaps and tips in the development of probiotics for swine production." Journal of Animal Science 98, Supplement_4 (2020): 182. http://dx.doi.org/10.1093/jas/skaa278.335.
Full textKarnachuk, Olga V., Alexey V. Beletsky, Andrey L. Rakitin, et al. "Antibiotic-Resistant Desulfovibrio Produces H2S from Supplements for Animal Farming." Microorganisms 11, no. 4 (2023): 838. http://dx.doi.org/10.3390/microorganisms11040838.
Full textChade, Alejandro R., Maxx L. Williams, Jason Engel, Erika Guise, and Taylor W. Harvey. "A translational model of chronic kidney disease in swine." American Journal of Physiology-Renal Physiology 315, no. 2 (2018): F364—F373. http://dx.doi.org/10.1152/ajprenal.00063.2018.
Full textMathern, Nathalie, Ehsan Yousefian, Hani Ridwan, Omid Nikoubashman, and Martin Wiesmann. "Comparison of porcine and human vascular diameters for the optimization of interventional stroke training and research." PLOS ONE 17, no. 5 (2022): e0268005. http://dx.doi.org/10.1371/journal.pone.0268005.
Full textFriess, S. H., M. Y. Naim, T. J. Kilbaugh, J. Ralston, and S. S. Margulies. "Premedication with meloxicam exacerbates intracranial haemorrhage in an immature swine model of non-impact inertial head injury." Laboratory Animals 46, no. 2 (2012): 164–66. http://dx.doi.org/10.1258/la.2011.011084.
Full textXanthos, T., P. Lelovas, I. Vlachos, et al. "Cardiopulmonary arrest and resuscitation in Landrace/Large White swine: a research model." Laboratory Animals 41, no. 3 (2007): 353–62. http://dx.doi.org/10.1258/002367707781282820.
Full textKu, JC, Y. Dobashi, CR Pasarikovski, et al. "P.191 Development and Testing of a Novel Hydrogel Embolization Treatment for Neurovascular Diseases: Preliminary Animal Results." Canadian Journal of Neurological Sciences / Journal Canadien des Sciences Neurologiques 48, s3 (2021): S75. http://dx.doi.org/10.1017/cjn.2021.467.
Full textFuchimoto, Yasushi, Kazuhiko Yamada, Akira Shimizu, et al. "Relationship Between Chimerism and Tolerance in a Kidney Transplantation Model." Journal of Immunology 162, no. 10 (1999): 5704–11. http://dx.doi.org/10.4049/jimmunol.162.10.5704.
Full textMabry, J. W., and M. T. See. "Selection with the Animal Model Versus Selection Within Contemporary Groups for Swine." Journal of Dairy Science 73, no. 9 (1990): 2657–65. http://dx.doi.org/10.3168/jds.s0022-0302(90)78951-5.
Full textCarl, S., J. Voegele, G. Staehler, and M. Wiesel. "Kidney splitting in miniature swine: a new animal model in renal transplantation." Transplantation Proceedings 32, no. 4 (2000): 800–801. http://dx.doi.org/10.1016/s0041-1345(00)00988-x.
Full textMohan, K., N. Shridhar, S. G. Ramachandra, T. V. Shiva Shankar, B. H. Pavithra, and B. Venkanna. "Mini-pigs as replacement for non-rodent species." Journal of Laboratory Animal Science 1, no. 2 (2019): 42–46. https://doi.org/10.48165/jlas.2019.1.2.9.
Full textFalach, Reut, Anita Sapoznikov, Yentl Evgy, et al. "Post-Exposure Anti-Ricin Treatment Protects Swine against Lethal Systemic and Pulmonary Exposures." Toxins 12, no. 6 (2020): 354. http://dx.doi.org/10.3390/toxins12060354.
Full textPandian, Vinciya, William Robert Leeper, Christian Jones, et al. "Comparison of surgical cricothyroidotomy training: a randomized controlled trial of a swine model versus an animated robotic manikin model." Trauma Surgery & Acute Care Open 5, no. 1 (2020): e000431. http://dx.doi.org/10.1136/tsaco-2019-000431.
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