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有髓纤维、无髓纤维和脱髓鞘纤维中的传导。

Conduction in myelinated, unmyelinated, and demyelinated fibers.

作者信息

Waxman S G

出版信息

Arch Neurol. 1977 Oct;34(10):585-9. doi: 10.1001/archneur.1977.00500220019003.

Abstract

Conduction in demyelinated axons is characterized by decreased conduction velocity, temporal dispersion of impulses, and conduction failure. It is not possible to infer the electrical properties of the bared internodal axon membrane in demyelinated fibers from observations of decreased conduction velocity or conduction failure. Cytochemical evidence indicates that there are, in fact, distinct structural differences between nodal and internodal regions of the normal axon membrane. This conclusion is confirmed by freeze-fracture and pharmacological studies. A number of approaches to the development of effective symptomatic therapy in the demyelinating diseases are suggested by recent experimental findings: determination of the membrane properties necessary for conduction across focally demyelinated regions and the identification of agents that would encourage the development of these properties; alterations in the external milieu of demyelinated fibers; and the development of agents that might promote remyelination.

摘要

脱髓鞘轴突的传导具有传导速度降低、冲动时间离散和传导阻滞等特征。从传导速度降低或传导阻滞的观察结果中,无法推断出脱髓鞘纤维中裸露的节间轴突膜的电学特性。细胞化学证据表明,正常轴突膜的节点和节间区域实际上存在明显的结构差异。这一结论得到了冷冻断裂和药理学研究的证实。近期的实验结果提示了一些针对脱髓鞘疾病开发有效对症治疗方法的途径:确定跨局灶性脱髓鞘区域传导所需的膜特性,并识别能够促进这些特性发展的药物;改变脱髓鞘纤维的外部环境;以及开发可能促进髓鞘再生的药物。

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