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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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Chloride Channels and Carriers in Cultured Glial Cellsurons and glial cells (e.g., Salem .., 1975; Sykova and Orkand, 1980; Walz and Hertz, 1983b). The potassium uptake by glial cells is mediated by passive processes, namely spatial buffering and passive KC1 uptake, and/or by stimulation of the Na ./K . -ATPase (Kettenmann, 1987a). The efficiency of sp
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Towards a First-Order Deontic Action Logicmitters (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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Book 1990membrane distribution was thermodynamically passive and, in addition, showed that Cl- crossed the mem­ brane extremely rapidly. This latter finding [for a long time interpreted as being the result of a high passive chloride electrical permeability(? CI)] made it quite likely that Cl- would remain at
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Chloride Channels and Carriers in Nerve, Muscle, and Glial Cells
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Chloride Channels and Carriers in Nerve, Muscle, and Glial Cells978-1-4757-9685-8
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W. J. Stirlingg with graphical concept of frequency factor. Next, the concept of frequency analysis is discussed using different parametric probability distributions, such as normal distribution, lognormal distribution, log-Pearson type III distribution, Gumbel’s distribution etc. Basic concepts of risk, reliabil
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