兔隐神经无髓纤维动作电位序列的调节。

Q1 Medicine
Neurosignals Pub Date : 2013-01-01 Epub Date: 2012-08-01 DOI:10.1159/000337350
Zhi-Ru Zhu, Yi-Hui Liu, Wei-Gang Ji, Jian-Hong Duan, San-Jue Hu
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引用次数: 3

摘要

通常认为主轴突忠实地传导动作电位(ap)。最近的数据表明,神经处理可以沿着轴突路径发生。然而,时间编码的模式和机制尚不清楚。本研究采用单纤维记录的方法分析了兔隐神经C纤维主要轴突AP序列的活动依赖性调节。以20或50 ms的间歇刺激间隔对神经干施加5组超阈电脉冲,持续200 s。将这些训练的脉冲间间隔(ISIs)与输入的刺激间间隔进行比较。在重复刺激下观察到三种基本类型的C纤维:第一种类型的第一和第二AP之间的ISI (ISI1-2)长于刺激间期;第2型的ISI1-2在刺激间期周围呈波浪状波动,第3型的ISI1-2在长时间内表现为较短的间隔。此外,4-氨基吡啶敏感的钾离子和超极化激活的阳离子电流都参与了序列脉冲ISI1-2的调制。这些数据提供了新的证据,证明沿C纤维的主要轴突可以发生多种模式的神经传导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modulation of action potential trains in rabbit saphenous nerve unmyelinated fibers.

Usually, the main axon is assumed to faithfully conduct action potentials (APs). Recent data have indicated that neural processing can occur along the axonal path. However, the patterns and mechanisms of temporal coding are not clear. In the present study, single fiber recording was used to analyze activity-dependent modulation of AP trains in the main axons of C fibers in the rabbit saphenous nerve. Trains of 5 superthreshold electrical pulses at interstimulus intervals of 20 or 50 ms were applied to the nerve trunk for 200 s. The interspike intervals (ISIs) for these trains were compared to the input interstimulus intervals. Three basic types of C fibers were observed in response to repeated stimuli: first, the ISI between the first and second AP (ISI1-2) of type 1 was longer than the interstimulus interval; second, the ISI1-2 of type 2 showed wavelike fluctuations around the interstimulus interval, and third, the ISI1-2 of type 3 exhibited shorter intervals for a long period. Furthermore, both 4-aminopyridine-sensitive potassium and hyperpolarization-activated cation currents were involved in the modulation of ISI1-2 of train pulses. These data provide new evidence that multiple modes of neural conduction can occur along the main axons of C fibers.

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来源期刊
Neurosignals
Neurosignals 医学-神经科学
CiteScore
3.40
自引率
0.00%
发文量
3
审稿时长
>12 weeks
期刊介绍: Neurosignals is an international journal dedicated to publishing original articles and reviews in the field of neuronal communication. Novel findings related to signaling molecules, channels and transporters, pathways and networks that are associated with development and function of the nervous system are welcome. The scope of the journal includes genetics, molecular biology, bioinformatics, (patho)physiology, (patho)biochemistry, pharmacology & toxicology, imaging and clinical neurology & psychiatry. Reported observations should significantly advance our understanding of neuronal signaling in health & disease and be presented in a format applicable to an interdisciplinary readership.
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