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经皮脊髓直流电刺激可改变大鼠运动神经元的放电特性。

Motoneuron firing properties are modified by trans-spinal direct current stimulation in rats.

机构信息

Department of Neurobiology, Poznań University of Physical Education , Poznań , Poland.

Department of Biochemistry, Poznań University of Physical Education , Poznań , Poland.

出版信息

J Appl Physiol (1985). 2019 May 1;126(5):1232-1241. doi: 10.1152/japplphysiol.00803.2018. Epub 2019 Feb 21.

Abstract

Spinal polarization evoked by direct current stimulation [trans-spinal direct current stimulation (tsDCS)] is a novel method for altering spinal network excitability; however, it remains not well understood. The aim of this study was to determine whether tsDCS influences spinal motoneuron activity. Twenty Wistar rats under general pentobarbital anesthesia were subjected to 15 min anodal ( = 10) or cathodal ( = 10) tsDCS of 0.1 mA intensity, and the electrophysiological properties of their motoneurons were intracellularly measured before, during, and after direct current application. The major effects of anodal intervention included increased minimum firing frequency and the slope of the frequency-current () relationship, as well as decreased rheobase and currents evoking steady-state firing (SSF). The effects of cathodal polarization included decreased maximum SSF frequency, decreased slope, and decreased current evoking the maximum SSF. Notably, the majority of observed effects appeared immediately after the current onset, developed during polarization, and outlasted it for at least 15 min. Moreover, the effects of anodal polarization were generally more pronounced and uniform than those evoked by cathodal polarization. Our study is the first to present polarity-dependent, long-lasting changes in spinal motoneuron firing following tsDCS, which may aid in the development of more safe and accurate application protocols in medicine and sport. Trans-spinal direct current stimulation induces significant polarity-dependent, long-lasting changes in the threshold and firing properties of spinal motoneurons. Anodal polarization potentiates motoneuron firing whereas cathodal polarization acts mainly toward firing inhibition. The alterations in rheobase and rhythmic firing properties are not restricted to the period of current application and can be observed long after the current offset.

摘要

经颅直流电刺激诱导的脊髓极化[经脊髓直流电刺激(tsDCS)]是一种改变脊髓网络兴奋性的新方法,但目前仍不完全清楚。本研究旨在确定 tsDCS 是否会影响脊髓运动神经元的活动。在全身戊巴比妥麻醉下,20 只 Wistar 大鼠接受 15 分钟强度为 0.1 mA 的阳极( = 10)或阴极( = 10)tsDCS,在直流电应用前后,通过细胞内测量其运动神经元的电生理特性。阳极干预的主要影响包括增加最小放电频率和频率-电流()关系的斜率,以及降低阈值和引起稳态放电(SSF)的电流。阴极极化的影响包括最大 SSF 频率降低、斜率降低和引起最大 SSF 的电流降低。值得注意的是,大多数观察到的效应在电流开始后立即出现,在极化过程中发展,并持续至少 15 分钟。此外,阳极极化的影响通常比阴极极化引起的影响更明显和更均匀。本研究首次提出 tsDCS 后脊髓运动神经元放电的极性依赖性、持久变化,这可能有助于在医学和运动领域开发更安全、更准确的应用方案。 经脊髓直流电刺激可诱导脊髓运动神经元阈值和放电特性产生显著的、极性依赖性的、持久的变化。阳极极化增强运动神经元放电,而阴极极化主要作用于放电抑制。阈值和节律放电特性的改变不仅限于电流应用期间,并且可以在电流关闭后很长时间观察到。

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