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Titlebook: World Congress on Medical Physics and Biomedical Engineering September 7 - 12, 2009 Munich, Germany; Vol. 25/X Biomateria Olaf Dössel,Wolfg

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书目名称World Congress on Medical Physics and Biomedical Engineering September 7 - 12, 2009 Munich, Germany
副标题Vol. 25/X Biomateria
编辑Olaf Dössel,Wolfgang C. Schlegel
视频video
概述Proceedings of the World Congress 2009 for Medical Physics and Biomedical Engineering.Over 3000 scientists from all over the world discuss recent challenges in Biomedical Engineering and Medical Physi
丛书名称IFMBE Proceedings
图书封面Titlebook: World Congress on Medical Physics and Biomedical Engineering September 7 - 12, 2009 Munich, Germany; Vol. 25/X Biomateria Olaf Dössel,Wolfg
描述Present Your Research to the World! The World Congress 2009 on Medical Physics and Biomedical Engineering – the triennial scientific meeting of the IUPESM - is the world’s leading forum for presenting the results of current scientific work in health-related physics and technologies to an international audience. With more than 2,800 presentations it will be the biggest conference in the fields of Medical Physics and Biomedical Engineering in 2009! Medical physics, biomedical engineering and bioengineering have been driving forces of innovation and progress in medicine and healthcare over the past two decades. As new key technologies arise with significant potential to open new options in diagnostics and therapeutics, it is a multidisciplinary task to evaluate their benefit for medicine and healthcare with respect to the quality of performance and therapeutic output. Covering key aspects such as information and communication technologies, micro- and nanosystems, optics and biotechnology, the congress will serve as an inter- and multidisciplinary platform that brings together people from basic research, R&D, industry and medical application to discuss these issues. As a major event fo
出版日期Conference proceedings 2010
关键词Biomaterial; Clinical Engineering; E-Health; Medical Physics; Tissue Engineering; biological effects; biom
版次1
doihttps://doi.org/10.1007/978-3-642-03900-3
isbn_softcover978-3-642-03899-0
isbn_ebook978-3-642-03900-3Series ISSN 1680-0737 Series E-ISSN 1433-9277
issn_series 1680-0737
copyrightSpringer-Verlag Berlin Heidelberg 2010
The information of publication is updating

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Valve-gear: A contribution to development of artificial cardiac valves,t functions alter a primary pulsating streaming fluid into a continuous laminar pipe flow. Above all, abrupt changes of pressure which cause cavitation of sensible corpuscular elements in fluids should be reduced.
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Electrochemical stability of a new Ti base bioalloy in simulated human fluids,-4V alloy in Ringer solutions of different .H values (from 2.33 to 9.12) that simulate the complex conditions from the human body. All main electrochemical parameters and anticorrosive properties are improved as result of the beneficial, favorable effects of the replacement of vanadium with zirconium.
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Perfusion Bioreactor: A New Pulsatile System for the Perfusion of Tissue Engineered Cardiovascular G) under physiological conditions in a newly developed closed perfusion system. Human vascular fibroblasts (FBs) and endothelial cells (ECs) were isolated from saphenous vein segments and expanded in culture. PUG (n= 17, A= 38 ± 3 cm.) were either seeded with ECs (n= 9) or pre-seeded with FBs (n= 8)
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Interactions of Cells with Elastic Cholesteryl Liquid Crystals,cholesteryl liquid crystal has shown flexibility and elasticity of the material to sense cell contraction and relaxation over a period of time. Importantly, cells adhesion was precluded with the use of extracellular matrix proteins in this technique. The optimum operating range with linear elasticit
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