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Titlebook: Cell and Muscle Motility; Robert M. Dowben,Jerry W. Shay Book 1981 Plenum Press, New York 1981 Volume.biology.boundary element method.card

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发表于 2025-3-21 18:06:22 | 显示全部楼层 |阅读模式
书目名称Cell and Muscle Motility
编辑Robert M. Dowben,Jerry W. Shay
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图书封面Titlebook: Cell and Muscle Motility;  Robert M. Dowben,Jerry W. Shay Book 1981 Plenum Press, New York 1981 Volume.biology.boundary element method.card
描述Motility is a fundamental property of living systems, from the cytoplasmic streaming of unicellular organisms to the most highly differentiated and devel­ oped contractile system of higher organisms, striated muscle. Research on var­ ious aspects of motile systems in muscle and undifferentiated or non muscle cells has been developing at an ever more rapid pace in the laboratories of investiga­ tors with a wide variety of backgrounds using methodologies varying from me­ chanics to the most sophisticated physical measurements. Significant contri­ butions to our understanding of motility are coming from the disciplines of cell biology, biochemistry, pharmacology, molecular biology, biophysics, and physiology. The findings have relevance not only to basic scientists but to clinicians in such diverse fields as cardiology and neurology and to scientists in the more traditional physical sciences. Cell and Muscle Motility is a new multivolume series of essays by distinguished research workers in various fields whose work has a common thread of dealing with one aspect or another of motility. The essays are meant to focus on topics of current interest, to be critical rather than exhaustive,
出版日期Book 1981
关键词Volume; biology; boundary element method; cardiology; chemistry; field; molecular biology; pharmacology; phy
版次1
doihttps://doi.org/10.1007/978-1-4684-8196-9
isbn_softcover978-1-4684-8198-3
isbn_ebook978-1-4684-8196-9
copyrightPlenum Press, New York 1981
The information of publication is updating

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Studies of Sarcomere Length by Optical Diffraction,. The usefulness of this technique lies in the fact that it can provide an effectively instantaneous measurement of the length of the basic contractile unit of skeletal muscle fibers, the sarcomere. The importance of the measurement is that sarcomere length is a major determinant of the functional p
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Myosin Phosphorylation,t type of mechanism involved in numerous intracellular processes. These processes include glycogenolysis, gluconeogenesis, glycolysis, lipolysis, nucleic acid transcription, protein translation, and contractile-protein interactions (Adelstein and Eisenberg, 1980; M. Barany and K. Barany, 1980; Krebs
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Fine-Structural and Related Aspects of Nonmuscle-Cell Motility,ous other motility proteins, to date there is no single subcellular movement with a mechanism of action that is clearly explicable in terms of the better-understood microtubule-dynein or muscle-cell systems. The aim of this chapter is to examine relevant evidence, particularly that relating to the a
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The Role of Intermediate (10-nm) Filaments in the Development and Integration of the Myofibrillar Cskeleton. These elements of the cytoskeleton include microtubules (25 nm), which form elaborate cytoplasmic networks; actin or thin filaments (6 nm), which form cytoplasmic stress fibers; and the intermediate filaments (10 nm). The term “intermediate” filaments has been applied to this third class o
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Polymorphic Assemblies of Tubulin,otein of microtubules. Microtubules are important components of the cytoskeleton of cells, and only recently have we begun to perceive the associations between microtubules and other components of the cytoskeleton, such as actin (Griffith and Pollard, 1978; Fujii and Tanaka, 1979). There are several
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Nuclear Magnetic Resonance Studies of Muscle Constituents in Living Tissue,s often overlap the fields of biology, biochemistry, and physics; consequently, one sees such research approached from many different viewpoints. After an initial section describing the terms to be used, this chapter will discuss the phenomena occurring in terms of the biology and biochemistry invol
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