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感觉行为任务对痛阈和皮质兴奋性的影响。

Effects of sensory behavioral tasks on pain threshold and cortical excitability.

机构信息

Laboratory of Neuromodulation, Department of Physical Medicine and Rehabilitation, Spaulding Rehabilitation Hospital and Massachusetts General Hospital, Harvard Medical School, Boston, Massachusetts, United States of America.

出版信息

PLoS One. 2013;8(1):e52968. doi: 10.1371/journal.pone.0052968. Epub 2013 Jan 3.

Abstract

BACKGROUND/OBJECTIVE: Transcutaneous electrical stimulation has been proven to modulate nervous system activity, leading to changes in pain perception, via the peripheral sensory system, in a bottom up approach. We tested whether different sensory behavioral tasks induce significant effects in pain processing and whether these changes correlate with cortical plasticity.

METHODOLOGY/PRINCIPAL FINDINGS: This randomized parallel designed experiment included forty healthy right-handed males. Three different somatosensory tasks, including learning tasks with and without visual feedback and simple somatosensory input, were tested on pressure pain threshold and motor cortex excitability using transcranial magnetic stimulation (TMS). Sensory tasks induced hand-specific pain modulation effects. They increased pain thresholds of the left hand (which was the target to the sensory tasks) and decreased them in the right hand. TMS showed that somatosensory input decreased cortical excitability, as indexed by reduced MEP amplitudes and increased SICI. Although somatosensory tasks similarly altered pain thresholds and cortical excitability, there was no significant correlation between these variables and only the visual feedback task showed significant somatosensory learning.

CONCLUSIONS/SIGNIFICANCE: Lack of correlation between cortical excitability and pain thresholds and lack of differential effects across tasks, but significant changes in pain thresholds suggest that analgesic effects of somatosensory tasks are not primarily associated with motor cortical neural mechanisms, thus, suggesting that subcortical neural circuits and/or spinal cord are involved with the observed effects. Identifying the neural mechanisms of somatosensory stimulation on pain may open novel possibilities for combining different targeted therapies for pain control.

摘要

背景/目的:经皮电刺激已被证明通过外周感觉系统,自下而上调节神经系统活动,从而改变疼痛感知。我们测试了不同的感觉行为任务是否会对疼痛处理产生显著影响,以及这些变化是否与皮质可塑性相关。

方法/主要发现:本随机平行设计实验纳入了 40 名健康的右利手男性。使用经颅磁刺激(TMS),我们在压力痛阈和运动皮层兴奋性方面,测试了三种不同的躯体感觉任务,包括有和没有视觉反馈的学习任务以及简单的躯体感觉输入。感觉任务引起了手部特定的疼痛调节效应。它们增加了左手(即感觉任务的目标)的疼痛阈值,同时降低了右手的疼痛阈值。TMS 显示,躯体感觉输入降低了皮质兴奋性,表现为 MEP 幅度减小和 SICI 增加。尽管感觉任务相似地改变了疼痛阈值和皮质兴奋性,但这些变量之间没有显著相关性,只有视觉反馈任务显示出显著的躯体感觉学习。

结论/意义:皮质兴奋性和疼痛阈值之间缺乏相关性,以及任务之间缺乏差异效应,但疼痛阈值的显著变化表明,躯体感觉任务的镇痛效果主要与运动皮层神经机制无关,因此,这表明涉及到观察到的效应的是皮质下神经回路和/或脊髓。确定躯体感觉刺激对疼痛的神经机制可能为结合不同的靶向治疗来控制疼痛开辟新的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f7b2/3536816/504a6ae95a1d/pone.0052968.g001.jpg

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