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Titlebook: Cellular and Molecular Biology of Myelination; Gunnar Jeserich,Hans H. Althaus,Thomas V. Waehneld Conference proceedings 1990 Springer-Ver

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楼主: Wilson
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A. Fitoussi,MG Berry,R. J. SalmonOligodendrocytes represent one of the three major cell types in the central nervous system (CNS). Their main function has traditionally been recognized as the production of the myelin components which are added to the plasma membrane of olidogdendrocytes as they coil their processes around axons to form the elaborate multilayered myelin sheath.
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https://doi.org/10.1007/978-3-642-00144-4Spontaneous growth of axons after injury is extremely limited in the mammalian central nervous system (CNS). It is now clear, however, that injured CNS axons can be induced to elongate when provided with a suitable environment.
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Oligodendrocyte Differentiation: Developmental and Functional SubpopulationsOligodendrocytes represent one of the three major cell types in the central nervous system (CNS). Their main function has traditionally been recognized as the production of the myelin components which are added to the plasma membrane of olidogdendrocytes as they coil their processes around axons to form the elaborate multilayered myelin sheath.
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Long-Term Tissue Cultures of Newborn Rat Optic Nerve Cells : Functional Differentiation of Glia and A large body of literature documents depelopmental, functional, pathological and experimental aspects of optic nerve glia and progenitor cells (Vaughn, 1969; Skoff et al., 1976; Tennekoon et al., 1977; Aguayo et al., 1978; Juurlink and Federoff, 1980; Privat et al., 1981; Raff et al., 1983).
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https://doi.org/10.1007/978-3-642-00144-4itor cells are identified by immunolabeling with an antibody to cell surface gangliosides (A.B.) or glycoproteins (NSP4). O-2A progenitor cells purified and cultured from newborn rat brain (Behar et al., 1988) are shown in Figure 1.
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https://doi.org/10.1007/978-3-642-00144-4 the spatial distribution of sodium channels within axon membrane, and within astrocytes and Schwann cells in vivo and in vitro. The observations suggest a regional specialization of sodium channels within glial cells, and imply a major role for glial cells in the distribution of sodium channels along myelinated axon membrane.
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Immuno-Localization of Sodium Channels in Axon Membrane and Astrocytes and Schwann Cells in vivo and the spatial distribution of sodium channels within axon membrane, and within astrocytes and Schwann cells in vivo and in vitro. The observations suggest a regional specialization of sodium channels within glial cells, and imply a major role for glial cells in the distribution of sodium channels along myelinated axon membrane.
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