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躯体感觉输入对人体感觉运动系统的调制:来自实验性压力刺激和物理治疗的证据。

Modulation of the human sensorimotor system by afferent somatosensory input: evidence from experimental pressure stimulation and physiotherapy.

机构信息

Department of Neurology, Faculty of Medicine and Dentistry, Palacky University Olomouc, and University Hospital Olomouc, Czech Republic.

出版信息

Biomed Pap Med Fac Univ Palacky Olomouc Czech Repub. 2020 Dec;164(4):371-379. doi: 10.5507/bp.2020.052. Epub 2020 Nov 13.

Abstract

Peripheral afferent input is critical for human motor control and motor learning. Both skin and deep muscle mechanoreceptors can affect motor behaviour when stimulated. Whereas some modalities such as vibration have been employed for decades to alter cutaneous and proprioceptive input, both experimentally and therapeutically, the central effects of mechanical pressure stimulation have been studied less frequently. This discrepancy is especially striking when considering the limited knowledge of the neurobiological principles of frequently used physiotherapeutic techniques that utilise peripheral stimulation, such as reflex locomotion therapy. Our review of the available literature pertaining to pressure stimulation focused on transcranial magnetic stimulation (TMS) and neuroimaging studies, including both experimental studies in healthy subjects and clinical trials. Our search revealed a limited number of neuroimaging papers related to peripheral pressure stimulation and no evidence of effects on cortical excitability. In general, the majority of imaging studies agreed on the significant involvement of cortical motor areas during the processing of pressure stimulation. Recent data also point to the specific role of subcortical structures, such as putamen or brainstem reticular formation. A thorough comparison of the published results often demonstrated, however, major inconsistencies which are thought to be due to variable stimulation protocols and statistical power. In conclusion, localised peripheral sustained pressure is a potent stimulus inducing changes in cortical activation within sensory and motor areas. Despite historical evidence for modulation of motor behaviour, no direct link can be established based on available fMRI and electrophysiological data. We highlight the limited amount of research devoted to this stimulus modality, emphasise current knowledge gaps, present recent developments in the field and accentuate evidence awaiting replication or confirmation in future neuroimaging and electrophysiological studies.

摘要

周围传入输入对于人类运动控制和运动学习至关重要。皮肤和深部肌肉机械感受器在受到刺激时都可以影响运动行为。虽然有些模态,如振动,已经被用于改变皮肤和本体感觉输入,无论是实验还是治疗,机械压力刺激的中枢效应研究得较少。当考虑到对经常使用外周刺激的物理治疗技术的神经生物学原理的有限了解时,这种差异尤其明显,例如反射运动疗法。我们对与压力刺激相关的可用文献的综述重点是经颅磁刺激 (TMS) 和神经影像学研究,包括健康受试者的实验研究和临床试验。我们的搜索结果显示,与外周压力刺激相关的神经影像学论文数量有限,并且没有证据表明对皮质兴奋性有影响。一般来说,大多数成像研究都同意在处理压力刺激时皮质运动区的显著参与。最近的数据还指出了皮质下结构的特定作用,如壳核或脑干网状结构。然而,对已发表结果的详细比较经常表明存在重大不一致性,这被认为是由于刺激方案和统计能力的差异造成的。总之,局部持续的外周压力是一种有效的刺激物,可以在感觉和运动区域引起皮质激活的变化。尽管有历史证据表明运动行为的调节,但基于现有的 fMRI 和电生理数据,无法建立直接联系。我们强调了针对这种刺激模式的研究数量有限,强调了当前的知识差距,介绍了该领域的最新进展,并强调了在未来的神经影像学和电生理学研究中有待复制或确认的证据。

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