Cortical dynamics of movement-evoked pain in chronic low back pain.

The Journal of Physiology Pub Date : 2021-01-01 Epub Date: 2020-11-02 DOI:10.1113/JP280735
Wei-En Wang, Rachel L M Ho, Bryan Gatto, Susanne M van der Veen, Matthew K Underation, James S Thomas, Ajay B Antony, Stephen A Coombes
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引用次数: 8

Abstract

Key points: Cortical activity underlying movement-evoked pain is not well understood, despite being a key symptom of chronic musculoskeletal pain. We combined high-density electroencephalography with a full-body reaching protocol in a virtual reality environment to assess cortical activity during movement-evoked pain in chronic low back pain. Movement-evoked pain in individuals with chronic low back pain was associated with longer reaction times, delayed peak velocity and greater movement variability. Movement-evoked pain was associated with attenuated disinhibition in prefrontal motor areas, as evidenced by an attenuated reduction in beta power in the premotor cortex and supplementary motor area.

Abstract: Although experimental pain alters neural activity in the cortex, evidence of changes in neural activity in individuals with chronic low back pain (cLBP) remains scarce and results are inconsistent. One of the challenges in studying cLBP is that the clinical pain fluctuates over time and often changes during movement. The goal of the present study was to address this challenge by recording high-density electroencephalography (HD-EEG) data during a full-body reaching task to understand neural activity during movement-evoked pain. HD-EEG data were analysed using independent component analyses, source localization and measure projection analyses to compare neural oscillations between individuals with cLBP who experienced movement-evoked pain and pain-free controls. We report two novel findings. First, movement-evoked pain in individuals with cLBP was associated with longer reaction times, delayed peak velocity and greater movement variability. Second, movement-evoked pain was associated with an attenuated reduction in beta power in the premotor cortex and supplementary motor area. Our observations move the field forward by revealing attenuated disinhibition in prefrontal motor areas during movement-evoked pain in cLBP.

慢性腰痛中运动诱发疼痛的皮质动力学。
重点:尽管是慢性肌肉骨骼疼痛的关键症状,但运动诱发疼痛的皮层活动尚不清楚。我们将高密度脑电图与虚拟现实环境下的全身接触方案相结合,以评估慢性腰痛患者在运动诱发疼痛期间的皮质活动。慢性腰痛患者的运动诱发性疼痛与较长的反应时间、延迟的峰值速度和较大的运动变异性有关。运动诱发的疼痛与前额叶运动区解除抑制的减弱有关,正如运动前皮层和辅助运动区β能量的减弱所证明的那样。摘要:尽管实验性疼痛改变了皮层的神经活动,但慢性腰痛(cLBP)患者神经活动变化的证据仍然很少,结果也不一致。研究cLBP的挑战之一是临床疼痛随时间波动,并且经常在运动过程中发生变化。本研究的目的是通过记录高密度脑电图(HD-EEG)数据来了解运动诱发疼痛期间的神经活动,从而解决这一挑战。采用独立分量分析、源定位和测量投影分析对HD-EEG数据进行分析,比较运动诱发性疼痛和无痛对照的cLBP患者的神经振荡。我们报告两个新的发现。首先,cLBP患者的运动诱发疼痛与更长的反应时间、延迟的峰值速度和更大的运动变异性有关。其次,运动引起的疼痛与运动前皮层和辅助运动区β能量的减弱有关。我们的观察通过揭示在cLBP中运动引起的疼痛中前额叶运动区解除抑制的减弱将这一领域向前推进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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