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神经纤维的可塑性:传入纤维极化的长期效应。

The plasticity of nerve fibers: the prolonged effects of polarization of afferent fibers.

机构信息

Department of Neuroscience and Physiology, Sahlgrenska Academy, University of Gothenburg, Gothenburg, Sweden.

出版信息

J Neurophysiol. 2021 Nov 1;126(5):1568-1591. doi: 10.1152/jn.00718.2020. Epub 2021 Sep 15.

Abstract

The review surveys various aspects of the plasticity of nerve fibers, in particular the prolonged increase in their excitability evoked by polarization, focusing on a long-lasting increase in the excitability of myelinated afferent fibers traversing the dorsal columns of the spinal cord. We review the evidence that increased axonal excitability ) follows epidurally applied direct current (DC) as well as relatively short (5 or 10 ms) current pulses and synaptically evoked intrinsic field potentials; ) critically depends on the polarization of branching regions of afferent fibers at the sites where they bifurcate and give off axon collaterals entering the spinal gray matter in conjunction with actions of extrasynaptic GABA membrane receptors; and ) shares the feature of being activity-independent with the short-lasting effects of polarization of peripheral nerve fibers. A comparison between the polarization evoked sustained increase in the excitability of dorsal column fibers and spinal motoneurons (plateau potentials) indicates the possibility that they are mediated by partly similar membrane channels (including noninactivating type L Cav 1.3 but not Na channels) and partly different mechanisms. We finally consider under which conditions transspinally applied DC (tsDCS) might reproduce the effects of epidural polarization on dorsal column fibers and the possible advantages of increased excitability of afferent fibers for the rehabilitation of motor and sensory functions after spinal cord injuries. This review supplements previous reviews of properties of nerve fibers by surveying recent experimental evidence for their long-term plasticity. It also extends recent descriptions of spinal effects of DC by reviewing effects of polarization of afferent nerve fibers within the dorsal columns, the mechanisms most likely underlying the long-lasting increase in their excitability and possible clinical implications.

摘要

该综述调查了神经纤维可塑性的各个方面,特别是极化诱发的其兴奋性的长期增加,重点关注穿过脊髓背柱的有髓传入纤维兴奋性的持久增加。我们回顾了证据,表明增加的轴突兴奋性 ) 跟随硬膜外应用的直流 (DC) 以及相对较短的 (5 或 10 毫秒) 电流脉冲和突触诱发的固有场电位; ) 严重依赖于传入纤维分支区域的极化,这些区域在它们分叉并发出进入脊髓灰质的轴突分支的部位,同时还依赖于 GABA 膜受体的 extrasynaptic 作用;并且 ) 与外周神经纤维极化的短时间效应一样,具有非活动依赖性的特征。背柱纤维和脊髓运动神经元 (平台电位) 的极化诱发的兴奋性持续增加之间的比较表明,它们可能由部分相似的膜通道 (包括非失活型 L Cav 1.3 但不包括 Na 通道) 和部分不同的机制介导。我们最后考虑在何种条件下经脊髓施加的直流 (tsDCS) 可能复制硬膜外极化对背柱纤维的影响,以及传入纤维兴奋性增加对脊髓损伤后运动和感觉功能康复的可能优势。本综述通过调查神经纤维长期可塑性的最新实验证据,补充了以前关于神经纤维特性的综述。它还通过回顾背柱内传入神经纤维极化对脊髓的影响,扩展了最近关于直流的脊髓效应的描述,包括其兴奋性长期增加的最可能机制以及可能的临床意义。

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