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首页> 外文期刊>Clinical neurophysiology >An automated method to determine the transcranial magnetic stimulation-induced contralateral silent period.
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An automated method to determine the transcranial magnetic stimulation-induced contralateral silent period.

机译:确定经颅磁刺激诱发的对侧静默期的自动化方法。

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BACKGROUND: The transcranial magnetic stimulation (TMS)-induced contralateral silent period (CSP) refers to a period of interruption of voluntary muscle activity measured in tonically active muscles. The length of the CSP is generally interpreted to reflect cortical inhibition. The determination of the return of voluntary motor activity is typically accomplished via visual inspection of the electromyography (EMG) waveform and may be subject to inaccuracy on the part of the rater.OBJECTIVE: To present and evaluate an automated method (AM) to determine the CSP.METHODS: The CSP of 11 healthy controls was recorded using stimulus intensities 20 and 50% above the resting motor threshold (RMT). The mean CSP duration obtained by the two raters using visual inspection and our automated approach were compared.RESULTS: The interclass correlation coefficient (ICC) between the two raters and the AM was 0.99 at 150% of RMT and was 0.97 at 120% of RMT. The level of pre-stimulus EMG amplitude and sampling rate did notaffect agreement between the AM and more conventional visually guided methods.CONCLUSIONS: Our study demonstrates that this AM is a simple, objective and reliable approach for CSP determination.SIGNIFICANCE: The CSP is an important neurophysiological measure of cortical inhibition and its determination by our AM provides a more objective and automated approach compared to visually guided methods.
机译:背景:经颅磁刺激(TMS)诱导的对侧静默期(CSP)是指在活跃的肌肉中测得的自愿性肌肉活动的中断时期。通常将CSP的长度解释为反映皮质抑制。目的是通过目视检查肌电图(EMG)波形来完成对自愿运动活动恢复的确定,而评估者可能会受到不准确的影响。目的:提出并评估一种自动方法(AM)来确定CSP方法:使用高于静息运动阈值(RMT)的20%和50%的刺激强度来记录11名健康对照的CSP。结果:两个评估者和AM之间的类间相关系数(ICC)在RMT的150%时为0.99,在RMT的120%时为0.97。 。刺激前的肌电图振幅和采样率水平不会影响AM和更常规的视觉引导方法之间的一致性。结论:我们的研究表明,这种AM是一种简单,客观,可靠的CSP测定方法。与视觉引导方法相比,重要的皮质抑制神经生理测量及其通过AM的测定提供了一种更加客观和自动化的方法。

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