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Titlebook: Cell Mechanics and Cellular Engineering; Van C. Mow,Roger Tran-Son-Tay,Robert M. Hochmuth Book 1994 Springer-Verlag New York, Inc. 1994 DN

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書目名稱Cell Mechanics and Cellular Engineering
編輯Van C. Mow,Roger Tran-Son-Tay,Robert M. Hochmuth
視頻videohttp://file.papertrans.cn/223/222839/222839.mp4
圖書封面Titlebook: Cell Mechanics and Cellular Engineering;  Van C. Mow,Roger Tran-Son-Tay,Robert M. Hochmuth Book 1994 Springer-Verlag New York, Inc. 1994 DN
描述Cell mechanics and cellular engineering may be defined as the application of principles and methods of engineering and life sciences toward fundamental understanding of structure-function relationships in normal and pathological cells and the development of biological substitutes to restore cellular functions. This definition is derived from one developed for tissue engineering at a 1988 NSF workshop. The reader of this volume will see the definition being applied and stretched to study cell and tissue structure-function relationships. The best way to define a field is really to let the investigators describe their areas of study. Perhaps cell mechanics could be compartmentalized by remembering how some of the earliest thinkers wrote about the effects of mechanics on growth. As early as 1638, Galileo hypothesized that gravity and of living mechanical forces place limits on the growth and architecture organisms. It seems only fitting that Robert Hooke, who gave us Hooke‘s law of elasticity, also gave us the word "cell" in his 1665 text, Micrographid, to designate these elementary entities of life. Julius Wolffs 1899 treatise on the function and form of the trabecular architecture pr
出版日期Book 1994
關(guān)鍵詞DNA; biochemistry; biophysics; cell; cytoskeleton; gene; gene expression; leukocytes; metabolism; migration; m
版次1
doihttps://doi.org/10.1007/978-1-4613-8425-0
isbn_softcover978-1-4613-8427-4
isbn_ebook978-1-4613-8425-0
copyrightSpringer-Verlag New York, Inc. 1994
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Osteoblast Responses to Steady Shear Stressc equilibrium existing between resorption and deposition of mineral. Although each bone has a genetically determined minimal mass and structure, the normal state of bone in the physiologic environment is a consequence of adaptations to various chemical and physical stimuli (Lanyon 1984). These adapt
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Kinetics and Mechanics of Cell Adhesion under Hydrodynamic Flow: Two Cell Systems Osborn 1990; Springer, 1990; McEver, 1991; Lasky, 1992; Bevilacqua, 1993). It is generally believed adhesive interactions between leukocytes and endothelium are mediated by specific complementary binding between couterreceptors on both leukocytes and endothelium (Springer, 1990). Of particular inte
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