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Titlebook: Biomechanics of Active Movement and Deformation of Cells; Nuri Akka? Conference proceedings 1990 Springer-Verlag Berlin Heidelberg 1990 Mi

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期刊全稱Biomechanics of Active Movement and Deformation of Cells
影響因子2023Nuri Akka?
視頻videohttp://file.papertrans.cn/188/187940/187940.mp4
學科分類Nato ASI Subseries H:
圖書封面Titlebook: Biomechanics of Active Movement and Deformation of Cells;  Nuri Akka? Conference proceedings 1990 Springer-Verlag Berlin Heidelberg 1990 Mi
影響因子Cytomechanics is the application of the classical principles of mechanics in cell biology. It is an applied science concerned with the description and evaluation of mechanical properties of cells and their organelles as well as of the forces exerted by them. Thus, this topic needs a truly interdisciplinary approach, and accordingly this volume gives an up-to-date account of the current research done on cell division, mitosis, cytokinesis, cell locomotion and cell deformation during normal development and the cytoskeletal role in cell shape. Biologists, biomechanicians, biophysicists, biochemists and biomathematicians here discuss the basic concepts of mechanics and thermodynamics, emphasizing their applicability to cell activities.
Pindex Conference proceedings 1990
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Force Generation in the Mitotic Spindle,chromatids,” are genetically identical and are linked together to form one mechanical unit. There is generally at least one constriction on a chromosome, the so- called “centromere,” which will become the site of attachment of the chromosome to the machinery which will move it during mitosis. The pe
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Physical Model for Phagocyte Motility: Local Growth of a Contractile Network from a Passive Body, shape. For phagocytes, the subsurface structure appears to be a cortical network (Southwick and Stossel, 1983; Stossel et al, 1980; Valerius et al, 1981; Hartwig and Yin, 1988) of actin filaments attached to the membrane in a way that is not well understood. Although this arrangement seems similar
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The Invasive Behaviour of Murine T-Lymphoma Cells ,,have at present only a fragmentary knowledge of the mechanisms that control tissue infiltration by both leukocytes and cancer cells. In face of the complexity and the poor accessibility of the phenomenon ., the search for the factors affecting invasive cell movements relies on the use of . models th
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Biomechanics of Active Movement and Deformation of Cells
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https://doi.org/10.1007/978-3-8349-9946-7ee (but may think he can) the location and nature of the constraints and forces that reshape the cell, the outermost limits of the mitotic apparatus and the location of regions where the action of the mitotic apparatus upon the surface is most intense. Whether cytokinesis can serve as a useful examp
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Motivation und Aufgabenstellung212 B.C.) is generally considered to be one of the first mechanicians. As a science which began as the contemplation of nature, mechanics has intrigued almost all of the great scientists of all times. Among the more familiar ones, we can name the following few: Stev in(1548–1620), Gali1eo((1564–1642
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https://doi.org/10.1007/978-3-8349-9753-1 shape. For phagocytes, the subsurface structure appears to be a cortical network (Southwick and Stossel, 1983; Stossel et al, 1980; Valerius et al, 1981; Hartwig and Yin, 1988) of actin filaments attached to the membrane in a way that is not well understood. Although this arrangement seems similar
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