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Titlebook: Nerve and Muscle; Membranes, Cells, an Richard B. Stein Book 1980 Plenum Press, New York 1980 biological.complex system.kinetics.molecule.t

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Cable Theory and Extracellular Recording,ver, experimental precautions have to be taken to ensure that this assumption is valid. In voltage clamping a squid axon, a long thin electrode is passed down the long axis of the fiber so that current is passed uniformly across the membrane and the membrane is therefore held at the same potential a
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Synaptic and Neuromuscular Transmission,oss the gap or . that separates one nerve cell from another. Nerve cells may also make synaptic connections with effector cells such as muscle cells to produce contraction, or with endocrine cells to release hormones. In line with the theme of this book, much of the discussion will be related to the
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Sensory Receptors,mission of information to the central nervous system. In keeping with the theme of the book, the properties of muscle receptors will be stressed, but general methods will also be described for analyzing sensory receptors. The treatment of muscle receptors can be considered as an example of how many
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Control of Movement, and the way they control movement. Many of the same principles can be used to study other parts of the nervous system, but the control of movement will be emphasized as a logical extension of the material dealt with in previous chapters. First, the basic reflexes will be summarized, together with s
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https://doi.org/10.1007/978-1-4684-3797-3biological; complex system; kinetics; molecule; thermodynamics; viscoelastic properties
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