IMPACT and Trajectoires Teams, INSERM U1028, CNRS UMR5292, Lyon Neuroscience Research Center (CRNL), Lyon, France.
University UCBL Lyon 1, University of Lyon, Lyon, France.
Eur J Neurosci. 2022 Jan;55(1):189-200. doi: 10.1111/ejn.15536. Epub 2021 Dec 8.
Reorganization of the sensorimotor cortex following permanent (e.g., amputation) or temporary (e.g., local anaesthesia) deafferentation of the hand has revealed large-scale plastic changes between the hand and face representations that are accompanied by perceptual correlates. The physiological mechanisms underlying this reorganization remain poorly understood. The aim of this study was to investigate sensorimotor interactions between the face and hand using an afferent inhibition transcranial magnetic stimulation protocol in which the motor evoked potential elicited by the magnetic pulse is inhibited when it is preceded by an afferent stimulus. We hypothesized that if face and hand representations in the sensorimotor cortex are functionally coupled, then electrocutaneous stimulation of the face would inhibit hand muscle motor responses. In two separate experiments, we delivered an electrocutaneous stimulus to either the skin over the right upper lip (Experiment 1) or right cheek (Experiment 2) and recorded muscular activity from the right first dorsal interosseous. Both lip and cheek stimulation inhibited right first dorsal interosseous motor evoked potentials. To investigate the specificity of this effect, we conducted two additional experiments in which electrocutaneous stimulation was applied to either the right forearm (Experiment 3) or right upper arm (Experiment 4). Forearm and upper arm stimulation also significantly inhibited the right first dorsal interosseous motor evoked potentials, but this inhibition was less robust than the inhibition associated with face stimulation. These findings provide the first evidence for face-to-hand afferent inhibition.
手部的感觉运动皮层在受到永久性(如截肢)或暂时性(如局部麻醉)去传入神经支配后会发生重组,这揭示了手部和面部代表之间存在大规模的可塑性变化,并且伴随着知觉相关的变化。这种重组的生理机制仍知之甚少。本研究旨在使用传入抑制经颅磁刺激方案来研究面部和手部之间的感觉运动相互作用,该方案中,当磁脉冲引起的运动诱发电位之前有传入刺激时,该运动诱发电位会被抑制。我们假设,如果感觉运动皮层中的面部和手部代表是功能耦合的,那么面部的皮肤电刺激会抑制手部肌肉的运动反应。在两个单独的实验中,我们分别对右上唇(实验 1)或右脸颊(实验 2)的皮肤施加皮肤电刺激,并记录右第一背骨间肌的肌肉活动。唇和脸颊刺激均抑制了右第一背骨间肌的运动诱发电位。为了研究这种效应的特异性,我们进行了另外两个实验,在这两个实验中,皮肤电刺激分别施加于右前臂(实验 3)或右上臂(实验 4)。前臂和上臂刺激也显著抑制了右第一背骨间肌的运动诱发电位,但这种抑制作用不如与面部刺激相关的抑制作用强烈。这些发现为面部到手部的传入抑制提供了首个证据。