Auswahl der wissenschaftlichen Literatur zum Thema „Myocarde – Histologie“
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Zeitschriftenartikel zum Thema "Myocarde – Histologie"
Goralskyi, L. P., M. R. Ragulya, I. M. Sokulskyi, N. L. Kolesnik und I. Y. Goralska. „Morphological and morphometrical characteristics of cattle heart structure“. Scientific Messenger of LNU of Veterinary Medicine and Biotechnologies 23, Nr. 103 (27.11.2021): 145–51. http://dx.doi.org/10.32718/nvlvet10320.
Der volle Inhalt der QuelleAccord, Ryan, und Jos Maessen. „Endoscopic Vein Harvesting for Coronary Bypass Grafting: A Blessing or a Trojan Horse?“ Cardiology Research and Practice 2011 (2011): 1–6. http://dx.doi.org/10.4061/2011/813512.
Der volle Inhalt der QuelleGuo, Bing, Qing Lyu, Orazio J. Slivano, Ronald Dirkx, Christine K. Christie, Jan Czyzyk, Aram F. Hezel, Ali G. Gharavi, Eric M. Small und Joseph M. Miano. „Serum Response Factor Is Essential for Maintenance of Podocyte Structure and Function“. Journal of the American Society of Nephrology 29, Nr. 2 (07.11.2017): 416–22. http://dx.doi.org/10.1681/asn.2017050473.
Der volle Inhalt der QuelleChen, Jian-Fu, Shusheng Wang, Qiulian Wu, Dongsun Cao, Thiha Nguyen, Yiping Chen und Da-Zhi Wang. „Myocardin Marks the Earliest Cardiac Gene Expression and Plays an Important Role in Heart Development“. Anatomical Record: Advances in Integrative Anatomy and Evolutionary Biology 291, Nr. 10 (Oktober 2008): 1200–1211. http://dx.doi.org/10.1002/ar.20756.
Der volle Inhalt der QuelleShao, Jing, Huihui Xu, Xiaoyan Wu und Yong Xu. „Epigenetic activation of CTGF transcription by high glucose in renal tubular epithelial cells is mediated by myocardin-related transcription factor A“. Cell and Tissue Research 379, Nr. 3 (26.11.2019): 549–59. http://dx.doi.org/10.1007/s00441-019-03124-5.
Der volle Inhalt der QuelleLiu, Li, Marycarmen Arévalo Martínez, Catarina Rippe, Martin Eugen Johansson, Johan Holmberg, Sebastian Albinsson und Karl Swärd. „Itga8-Cre-mediated deletion of YAP and TAZ impairs bladder contractility with minimal inflammation and chondrogenic differentiation“. American Journal of Physiology-Cell Physiology, 06.11.2023. http://dx.doi.org/10.1152/ajpcell.00270.2023.
Der volle Inhalt der QuelleMillah, Nida Ul, Agapietta Kusumawardani, Laelatul Rahmad, Novi Herliyani, Kurniati Sarwendah, Bambang Sutrisno, Hastari Wuryastuty und R. Wasito. „The Effects of Turmeric Extract (Curcuma domestica Val) on Cigarette Smoke Cardiotoxicity in The Wistar Rats“. Jurnal Sain Veteriner 31, Nr. 2 (13.03.2014). http://dx.doi.org/10.22146/jsv.3811.
Der volle Inhalt der QuelleLu, Bingchuan, Mingfeng Li, Yongcong Fang, Zibo Liu, Ting Zhang und Zhuo Xiong. „Rapid Fabrication of Cell-Laden Microfibers for Construction of Aligned Biomimetic Tissue“. Frontiers in Bioengineering and Biotechnology 8 (18.01.2021). http://dx.doi.org/10.3389/fbioe.2020.610249.
Der volle Inhalt der QuelleDissertationen zum Thema "Myocarde – Histologie"
Toussaint, Marcel. „Histologie myocardique dans la stenose pulmonaire“. Paris 6, 1987. http://www.theses.fr/1987PA066029.
Der volle Inhalt der QuelleJehl, Jean-Philippe. „Indentation instrumentée du tissu cardiaque : vers l’élaboration d’une bio-prothèse“. Electronic Thesis or Diss., Université de Lorraine, 2021. http://www.theses.fr/2021LORR0033.
Der volle Inhalt der QuelleDespite undeniable progress of the heart function understanding and in the improvement of medical and surgical techniques, ischaemic heart failure is still a major cause of death worldwide. New therapeutic approaches, such as regenerative medicine and tissue engineering are being developed to compensate or even replace damaged tissues. One of the attempts of tissue engineering is to reproduce as closely as possible the mechanical behavior of the tissue to be treated. In this thesis work, an approach linking the mechanical characterisation of healthy heart tissue with its microstructure was carried out. To this end and in order to avoid the degradation of the material properties due to its drying out and/or de-vascularisation, an experimental protocol was defined to perform the measurements in a context close to its physiological environment. The cardiac tissue was thus characterised through the estimation of Young's modulus in two main directions by spherical indentation. These results thus confirmed the anisotropic nature of the cardiac tissue. The search for the time limits for using the samples after collection (ex-vivo experimentation) enabled us to define a tissue rigidification kinetics which can be compared to the dating techniques used in forensic medicine. One perspective to this thesis work is the development of a passive substitute material in order to obtain membranes whose mechanical properties are close to those of cardiac tissue. On the basis of the mechanical characterization of the myocardium, a model of the mechanical behavior of a bio-prosthesis has been defined. A first membrane prototype has been produced and tested on small animals. These results were an essential step in the development of biomechanical assistance within the framework of a European ERDF ASCATIM project (2018-2021). Finally, a first transposition of the method developed for cardiac tissue was proposed for a biological material whose mechanical characteristics are unknown: cortical bone
Fornès, Paul. „La mort subite coronaire, étude histologique et histomorphométrique des artères coronaires et du myocarde : Etude portant sur 111 autopsies“. Paris 6, Saint-Antoine, 1991. http://www.theses.fr/1991PA062012.
Der volle Inhalt der QuelleBuchteile zum Thema "Myocarde – Histologie"
Tanimoto, T., T. Tsuchiya, T. Kamiya, C. Yutani und T. Naito. „Histologic Findings of Biopsied Right Ventricular Myocardia in Congenital Heart Disease before and after Heart Surgery“. In Pediatric Cardiology, 1053–57. New York, NY: Springer New York, 1986. http://dx.doi.org/10.1007/978-1-4613-8598-1_278.
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