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Titlebook: Chloride Channels and Carriers in Nerve, Muscle, and Glial Cells; Francisco J. Alvarez-Leefmans,John M. Russell Book 1990 Springer Science

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Book 1990ht have resulted from such an endeavor! One might ask why Cl-, the most abundant biological anion, attracted so little attention from investigators. The main reason was that the prevailing paradigm for cellular ion homeostasis in the 1950s and 1960s assigned Cl- a ther­ modynamically passive and uns
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https://doi.org/10.1007/978-3-031-15168-2rical stability of the cell—the generation of myotonic activity (Lipicky and Bryant, 1966; Adrian and Marshall, 1976). As with all successful revolutions, the new regime dominated ideas, even in other cell types, for several years.
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Chloride Transport across the Sarcolemma of Vertebrate Smooth and Skeletal Musclerical stability of the cell—the generation of myotonic activity (Lipicky and Bryant, 1966; Adrian and Marshall, 1976). As with all successful revolutions, the new regime dominated ideas, even in other cell types, for several years.
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A Rewrite Approach for Pattern Containmentof circulating cells can result in changes in blood viscosity and altered rheologic properties, disruption of neural cell volume can result in altered cable properties and consequent effects upon neural integration.
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Intracellular Cl− Regulation and Synaptic Inhibition in Vertebrate and Invertebrate Neuronsmitters (or hormones) to their specific cell responses. All the above considerations make evident the importance of understanding the mechanisms by which Cl. is regulated and maintained in nerve cells. Given the wide spectrum of the subjects involved, the present account will be confined to consider
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