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条件性疼痛调制会影响人类对伤害性刺激的退缩反射模式。

Conditioned pain modulation affects the withdrawal reflex pattern to nociceptive stimulation in humans.

机构信息

Integrative Neuroscience, SMI®, Dept. of Health Science and Technology, Fredrik Bajers Vej 7, Aalborg Ø (9220), Aalborg, Denmark.

Integrative Neuroscience, SMI®, Dept. of Health Science and Technology, Fredrik Bajers Vej 7, Aalborg Ø (9220), Aalborg, Denmark; Center for Neuroplasticity and Pain (CNAP), SMI®, Dept. of Health Science and Technology, Fredrik Bajers Vej 7, Aalborg Ø (9220), Aalborg, Denmark; Hammel Neurorehabilitation and Research Centre, Aarhus University Hospital, Voldbyvej 15, Hammel (8450), Denmark.

出版信息

Neuroscience. 2019 Jun 1;408:259-271. doi: 10.1016/j.neuroscience.2019.04.016. Epub 2019 Apr 16.

Abstract

Human studies have repeatedly shown that conditioning pain modulation (CPM) exerts an overall descending inhibitory effect over spinal nociceptive activity. Previous studies have reported a reduction of the nociceptive withdrawal reflex (NWR) under CPM. Still, how descending control influences the muscle activation patterns involved in this protective behavior remains unknown. This study aimed to characterize the effects of CPM on the withdrawal pattern assessed by a muscle synergy analysis of several muscles involved in the lower limb NWR. To trigger descending inhibition, CPM paradigm was applied using the cold-pressor test (CPT) as conditioning stimulus. Sixteen healthy volunteers participated. The NWR was evoked by electrical stimulation on the arch of the foot before, during and after the CPT. Electromyographic (EMG) activity of two proximal (rectus femoris and biceps femoris) and two distal (tibialis anterior and soleus) muscles was recorded. A muscle synergy analysis was performed on the decomposition of the EMG signals, based on a non-negative matrix factorization algorithm. Results showed that two synergies (Module I and II) were sufficient to describe the NWR pattern. Under CPM, Module I activation amplitude was significantly reduced in a narrow time-window interval (118-156 ms) mainly affecting distal muscles, whereas Module II activation amplitude was significantly reduced in a wider time-window interval (150-250 ms), predominantly affecting proximal muscles. These findings suggest that proximal muscles are largely under supraspinal control. The descending inhibitory drive exerted onto the spinal cord may adjust the withdrawal pattern by differential recruitment of the muscles involved in the protective behavior.

摘要

人体研究反复表明,条件性疼痛调制(CPM)对脊髓伤害性活动产生总体下行抑制作用。先前的研究报告称,CPM 下的伤害性退缩反射(NWR)减少。尽管如此,下行控制如何影响参与这种保护行为的肌肉激活模式仍不清楚。本研究旨在通过对参与下肢 NWR 的几个肌肉的肌肉协同作用分析来描述 CPM 对退缩模式的影响。为了引发下行抑制,使用冷压测试(CPT)作为条件刺激应用 CPM 范式。16 名健康志愿者参与了研究。在 CPT 之前、期间和之后,通过对脚底的电刺激引发 NWR。记录了两个近端(股直肌和股二头肌)和两个远端(胫骨前肌和比目鱼肌)肌肉的肌电图(EMG)活动。根据非负矩阵分解算法,对 EMG 信号的分解进行了肌肉协同作用分析。结果表明,两个协同作用(模块 I 和 II)足以描述 NWR 模式。在 CPM 下,模块 I 的激活幅度在一个狭窄的时间窗口间隔(118-156ms)内显著降低,主要影响远端肌肉,而模块 II 的激活幅度在一个较宽的时间窗口间隔(150-250ms)内显著降低,主要影响近端肌肉。这些发现表明,近端肌肉主要受到皮质下控制。施加到脊髓上的下行抑制驱动力可能通过参与保护行为的肌肉的差异募集来调整退缩模式。

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