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足底特定部位的皮肤电刺激调节站立时足底屈肌和背屈肌的皮质脊髓兴奋性。

Location-specific cutaneous electrical stimulation of the footsole modulates corticospinal excitability to the plantarflexors and dorsiflexors during standing.

机构信息

Department of Human Health and Nutritional Sciences, University of Guelph, Guelph, Ontario, Canada.

Department for Health, University of Bath, Bath, United Kingdom.

出版信息

Physiol Rep. 2022 Jul;10(13):e15240. doi: 10.14814/phy2.15240.

Abstract

Non-noxious electrical stimulation to distinct locations of the foot sole evokes location-specific cutaneous reflex responses in lower limb muscles. These reflexes occur at latencies that may enable them to be mediated via a transcortical pathway. Corticospinal excitability to the plantarflexors and dorsiflexors was measured in 16 participants using motor evoked potentials (MEPs). Spinal excitability was measured in eight of the original participants using cervicomedullary motor evoked potentials (CMEPs). Measurements were collected with and without preceding cutaneous stimulus to either the heel (HEEL) or metatarsal (MET) locations of the foot sole, and evoked potentials were elicited to coincide with the arrival of the cutaneous volley at either the motor cortex or spinal cord. Plantarflexor MEPs and CMEPs were facilitated with cutaneous stimulation to the HEEL for MEPs (soleus p = 0.04, medial gastrocnemius (MG) p = 0.017) and CMEPs (soleus p = 0.047 and MG p = 0.015), but they were unchanged following MET stimulation for MEPs or CMEPs. Dorsiflexor MEPs were unchanged with cutaneous stimulation at either location, but dorsiflexor CMEPs increased with cutaneous stimulation (p = 0.05). In general, the increase in CMEP amplitudes was larger than the increase in MEP amplitudes, indicating that an increase in spinal excitability likely explains most of the increase in corticospinal excitability. The larger change observed in the CMEP also indicates that excitability from supraspinal sources likely decreased, which could be due to a net change in the excitability of intracortical circuits. This study provides evidence that cutaneous reflexes from foot sole skin are likely influenced by a transcortical pathway.

摘要

非伤害性电刺激足底不同部位会引起下肢肌肉特定部位的皮肤反射反应。这些反射潜伏期可能使它们能够通过皮质通路介导。通过运动诱发电位 (MEPs) 测量 16 名参与者的足底屈肌和背屈肌皮质脊髓兴奋性。在最初的 8 名参与者中,使用颈髓运动诱发电位 (CMEPs) 测量脊髓兴奋性。在有或没有先前对足底脚跟 (HEEL) 或跖骨 (MET) 部位进行皮肤刺激的情况下进行测量,并且诱发电位与皮肤传入波到达运动皮层或脊髓的时间一致。足底屈肌 MEP 和 CMEP 在对 HEEL 进行皮肤刺激时会得到促进(比目鱼肌 p=0.04,内侧腓肠肌 (MG) p=0.017)和 CMEP(比目鱼肌 p=0.047 和 MG p=0.015),但 MET 刺激后 MEP 或 CMEP 不变。在任何部位进行皮肤刺激时,背屈肌 MEP 均保持不变,但背屈肌 CMEP 增加(p=0.05)。一般来说,CMEP 幅度的增加大于 MEP 幅度的增加,这表明脊髓兴奋性的增加可能解释了皮质脊髓兴奋性增加的大部分。CMEP 观察到的较大变化也表明来自皮质下源的兴奋性可能降低,这可能是由于皮质内回路兴奋性的净变化。这项研究提供了证据,表明足底皮肤的皮肤反射可能受到皮质通路的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a13/9249991/b61bd2276a3a/PHY2-10-e15240-g004.jpg

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