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大幅度姿势摇摆可防止足部触觉信息消退:神经生理学证据。

Large Postural Sways Prevent Foot Tactile Information From Fading: Neurophysiological Evidence.

作者信息

Fabre Marie, Antoine Marine, Robitaille Mathieu Germain, Ribot-Ciscar Edith, Ackerley Rochelle, Aimonetti Jean-Marc, Chavet Pascale, Blouin Jean, Simoneau Martin, Mouchnino Laurence

机构信息

Laboratoire de Neurosciences Cognitives, Aix Marseille Université, CNRS, FR 3C, Marseille 13331, France.

Département de kinésiologie, Faculté de médecine, Université Laval, Québec, QC G1V 0A6, Canada.

出版信息

Cereb Cortex Commun. 2020 Dec 28;2(1):tgaa094. doi: 10.1093/texcom/tgaa094. eCollection 2021.

Abstract

Cutaneous foot receptors are important for balance control, and their activation during quiet standing depends on the speed and the amplitude of postural oscillations. We hypothesized that the transmission of cutaneous input to the cortex is reduced during prolonged small postural sways due to receptor adaptation during continued skin compression. Central mechanisms would trigger large sways to reactivate the receptors. We compared the amplitude of positive and negative post-stimulation peaks (PN) somatosensory cortical potentials evoked by the electrical stimulation of the foot sole during small and large sways in 16 young adults standing still with their eyes closed. We observed greater PN amplitudes during large sways compared with small sways consistent with increased cutaneous transmission during large sways. Postural oscillations computed 200 ms before large sways had smaller amplitudes than those before small sways, providing sustained compression within a small foot sole area. Cortical source analyses revealed that during this interval, the activity of the somatosensory areas decreased, whereas the activity of cortical areas engaged in motor planning (supplementary motor area, dorsolateral prefrontal cortex) increased. We concluded that large sways during quiet standing represent self-generated functional behavior aiming at releasing skin compression to reactivate mechanoreceptors. Such balance motor commands create sensory reafference that help control postural sway.

摘要

足部皮肤感受器对平衡控制很重要,在安静站立时其激活取决于姿势摆动的速度和幅度。我们假设,由于持续皮肤受压期间感受器适应,在长时间小幅度姿势摆动期间,皮肤输入向皮层的传递会减少。中枢机制会触发大幅度摆动以重新激活感受器。我们比较了16名闭眼静立的年轻人在小幅度和大幅度摆动期间,通过电刺激足底诱发的体感皮层电位的正、负刺激后峰值(PN)的幅度。我们观察到,与小幅度摆动相比,大幅度摆动期间的PN幅度更大,这与大幅度摆动期间皮肤传递增加一致。在大幅度摆动前200毫秒计算的姿势摆动幅度小于小幅度摆动前的幅度,在小面积足底区域内提供了持续的压迫。皮层源分析显示,在此期间,体感区域的活动减少,而参与运动规划的皮层区域(辅助运动区、背外侧前额叶皮层)的活动增加。我们得出结论,安静站立时的大幅度摆动代表旨在解除皮肤压迫以重新激活机械感受器的自我产生的功能性行为。这种平衡运动指令产生感觉传入,有助于控制姿势摆动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1288/8152841/1beb5a42e319/tgaa094f1.jpg

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