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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >DC-Evoked Modulation of Excitability of Myelinated Nerve Fibers and Their Terminal Branches; Differences in Sustained Effects of DC
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DC-Evoked Modulation of Excitability of Myelinated Nerve Fibers and Their Terminal Branches; Differences in Sustained Effects of DC

机译:DC诱发的肌肉神经纤维及其端子分支的兴奋性调节; 直流持续影响的差异

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Direct current (DC) evokes long-lasting changes in neuronal networks both presynaptically and postsynaptically and different mechanisms were proposed to be involved in them. Different mechanisms were also suggested to account for the different dynamics of presynaptic DC actions on myelinated nerve fibers stimulated before they entered the spinal gray matter and on their terminal branches. The aim of the present study was to examine whether these different dynamics might be related to differences in the involvement of K+ channels. To this end, we compared effects of the K+ channel blocker 4-amino-pyridine (4-AP) on DC-evoked changes in the excitability of afferent fibers stimulated within the dorsal columns (epidurally) and within their projection areas in the dorsal horn and motor nuclei (intraspinally). 4-AP was applied systemically in deeply anesthetized rats. DC-evoked increases in the excitability of epidurally stimulated afferent nerve fibers, and increases in field potentials evoked by these fibers, were not affected by 4-AP. In contrast, sustained decreases rather than increases in the excitability of intraspinally stimulated terminal nerve branches were evoked by local application of DC in conjunction with 4-AP. The study leads to the conclusion that 4-AP-sensitive K+ channels contribute to the sustained DC-evoked post-polarization increases in the excitability at the level of terminal branches of nerve fibers but not of the nodes of Ranvier nor within the juxta-paranodal regions where other mechanisms would be involved in inducing the sustained DC-evoked changes. (C) 2018 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:直流(DC)唤起了正式和突触后的神经元网络的长期变化,并提出了不同的机制参与其中。还提出了不同的机制,以考虑在进入脊柱灰质和其终端分支之前刺激的肌肉神经纤维上的突触前直流动作的不同动态。本研究的目的是检查这些不同的动态是否可能与K +通道的参与的差异有关。为此,我们比较K +通道阻滞剂4-氨基 - 吡啶(4-AP)对诸如椎间柱内刺激的传入纤维兴奋性的直流诱发变化的影响和在背角中的投影区域内的兴奋性和电机核(绞身器)。 4-AP在深入麻醉的大鼠中全身施用。 DC诱发的潜在刺激的传入神经纤维的兴奋性增加,并且这些纤维引起的现场电位增加不受4-AP的影响。相反,通过局部施用DC与4-AP结合局部施加诱导持续的降低而不是增加盗集刺激的末端神经分支的兴奋。该研究导致得出结论,4-AP敏感的K +通道有助于神经纤维末端分支水平的潜在促进性的持续直流偏振的增加,但不是Ranvier的节点,也不是juxta-paranodal的节点其他机制涉及诱导持续的直流诱发变化的地区。 (c)2018年IBRO。 elsevier有限公司出版。保留所有权利。

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