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Titlebook: Biomechanics of Cell Division; Nuri Akkas Book 1987 Springer Science+Business Media New York 1987 biomechanics.cells.mechanics.membrane.or

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期刊全称Biomechanics of Cell Division
影响因子2023Nuri Akkas
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学科分类NATO Science Series A:
图书封面Titlebook: Biomechanics of Cell Division;  Nuri Akkas Book 1987 Springer Science+Business Media New York 1987 biomechanics.cells.mechanics.membrane.or
影响因子There are virtually hundreds of life scientists publishing hundreds of papers a year on numerous aspects of the cell cycle. The following are few of the topics covered: cell membrane organization, membrane components, cytoskeleton and associated proteins, cell motility, actin in dividing cells, surface modulating assemblies, microfilaments, microtubules, cleavage furrow, fusion, etc. In all these topics, lifescientists talk about, among others, the forces within the system, the motion within the system and the failure of the system. The concepts of force, motion and failure are, one way or another, all related to the structure of the cell and to the mechanics of the cell activities. When the concepts of mechanics and structure enter the problem then one has to talk about biomechanics; in this case, biomechanics of cytology which we would like to call "Cytbmechanics". However, a review of the journals, books and conference proceedings related to various aspects of cytology reveals that mechanicians have not yet entered the field of cytology at a noticeable level. Some lifescientists have indeed made use of the general principles of mechanics in their works; however, no truly interdi
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Progress in Research on Mitosis,kinetochores on sister chromatids usually interact with fibers attached to opposite poles, and the two opposing forces exert a tension on the chromosome at its centromere. These forces are proportional in magnitude to the length of the spindle fibers (Hays, Wise, and Salmon, 1982), so the chromosome
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https://doi.org/10.1007/978-1-4684-1271-0biomechanics; cells; mechanics; membrane; organization; protein; proteins; structure; surface
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Os ethmoidale und Nasenskeletteilehanis, may be defined as that discipline which investigates the macroscopic response of systems to the action of forces or couples. The methods used are analytical, numerical and experimental. Systems may be discrete, in aggregate, or continuous. . is the application of the laws of mechanics to a biological system.
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