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Titlebook: Cytomechanics; The Mechanical Basis Jürgen Bereiter-Hahn,O. Roger Anderson,Wolf-Ernst Book 1987 Springer-Verlag Berlin Heidelberg 1987 cel

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rangement of these components represents a self-assembly process controlled by physicochemical and mechanical interactions. This general hypothesis demarcates the aim of studying cellular mechanics. Description and evaluation of mechanical properties of cells and their organelles, as well as of the
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Use of Finite Element Methods in Cytomechanics: Study of the Mechanical Stability of the Skeletal Bad on the bone-depositing cells (Frost 1982). Other examples of cytomechanical problems amenable to finite element method (FEM) analysis are presented in this publication including growth analyses of extracellular skeletons (see Chap. III.3.3).
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Implications of Microtubules in Cytomechanics: Static and Motile Aspectsar axis of the tubule, but are staggered at an oblique angle and follow a helical path around the tubule (Amos 1979). This monomer helix has been shown to be a 3-start helical family with a pitch of 12 nm and a pitch angle of 10.5° for 13 protofilament MTs.
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Dynamic Organization and Force Production in Cytoplasmic Strandslasmodium consists of a more or less continuous protoplasmic sheet which also encloses the pathways of an endoplasmic shuttle streaming. This migration polarity of a plasmodium is subject to changes due to, e.g., chemical stimuli.
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Book 1987rted by them, is the scope of this book on .Cytomechanics.. Emphasis is laid on the role of mechanical properties in the generation of shape and cytoplasmic motion, and on the basic principles and components determining mechanical properties.
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