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经颅磁刺激测试的神经回路在腰背肌皮质运动控制中的作用:一项系统综述

Contribution of neural circuits tested by transcranial magnetic stimulation in corticomotor control of low back muscle: a systematic review.

作者信息

Desmons Mikaël, Theberge Michael, Mercier Catherine, Massé-Alarie Hugo

机构信息

Center for Interdisciplinary Research in Rehabilitation and Social Integration (Cirris), CIUSSS de la Capitale-Nationale, Quebec, QC, Canada.

Rehabilitation Department, Université Laval, Quebec, QC, Canada.

出版信息

Front Neurosci. 2023 May 25;17:1180816. doi: 10.3389/fnins.2023.1180816. eCollection 2023.

Abstract

INTRODUCTION

Transcranial magnetic stimulation (TMS) is widely used to investigate central nervous system mechanisms underlying motor control. Despite thousands of TMS studies on neurophysiological underpinnings of corticomotor control, a large majority of studies have focused on distal muscles, and little is known about axial muscles (e.g., low back muscles). Yet, differences between corticomotor control of low back and distal muscles (e.g., gross vs. fine motor control) suggest differences in the neural circuits involved. This systematic review of the literature aims at detailing the organisation and neural circuitry underlying corticomotor control of low back muscles tested with TMS in healthy humans.

METHODS

The literature search was performed in four databases (CINAHL, Embase, Medline (Ovid) and Web of science) up to May 2022. Included studies had to use TMS in combination with EMG recording of paraspinal muscles (between T12 and L5) in healthy participants. Weighted average was used to synthesise quantitative study results.

RESULTS

Forty-four articles met the selection criteria. TMS studies of low back muscles provided consistent evidence of contralateral and ipsilateral motor evoked potentials (with longer ipsilateral latencies) as well as of short intracortical inhibition/facilitation. However, few or no studies using other paired pulse protocols were found (e.g., long intracortical inhibition, interhemispheric inhibition). In addition, no study explored the interaction between different cortical areas using dual TMS coil protocol (e.g., between primary motor cortex and supplementary motor area).

DISCUSSION

Corticomotor control of low back muscles are distinct from hand muscles. Our main findings suggest: (i) bilateral projections from each single primary motor cortex, for which contralateral and ipsilateral tracts are probably of different nature (contra: monosynaptic; ipsi: oligo/polysynaptic) and (ii) the presence of intracortical inhibitory and excitatory circuits in M1 influencing the excitability of the contralateral corticospinal cells projecting to low back muscles. Understanding of these mechanisms are important for improving the understanding of neuromuscular function of low back muscles and to improve the management of clinical populations (e.g., low back pain, stroke).

摘要

引言

经颅磁刺激(TMS)被广泛用于研究运动控制背后的中枢神经系统机制。尽管已有数千项关于皮质运动控制神经生理学基础的TMS研究,但绝大多数研究都集中在远端肌肉上,而对于轴性肌肉(如腰背部肌肉)的了解却很少。然而,腰背部肌肉和远端肌肉的皮质运动控制之间的差异(如粗略运动控制与精细运动控制)表明涉及的神经回路存在差异。本系统文献综述旨在详细阐述在健康人类中通过TMS测试的腰背部肌肉皮质运动控制的组织和神经回路。

方法

截至2022年5月,在四个数据库(CINAHL、Embase、Medline(Ovid)和Web of science)中进行文献检索。纳入的研究必须在健康参与者中使用TMS结合椎旁肌(T12至L5之间)的肌电图记录。加权平均数用于综合定量研究结果。

结果

44篇文章符合入选标准。对腰背部肌肉的TMS研究提供了一致的证据,证明存在对侧和同侧运动诱发电位(同侧潜伏期更长)以及短皮质内抑制/易化。然而,发现使用其他配对脉冲方案的研究很少或没有(如长皮质内抑制、半球间抑制)。此外,没有研究使用双TMS线圈方案探索不同皮质区域之间的相互作用(如初级运动皮层和辅助运动区之间)。

讨论

腰背部肌肉的皮质运动控制与手部肌肉不同。我们的主要发现表明:(i)每个单一初级运动皮层的双侧投射,其对侧和同侧通路可能性质不同(对侧:单突触;同侧:寡突触/多突触),以及(ii)M1中存在皮质内抑制和兴奋回路,影响投射到腰背部肌肉的对侧皮质脊髓细胞的兴奋性。理解这些机制对于增进对腰背部肌肉神经肌肉功能的理解以及改善临床人群(如腰背痛、中风)的管理很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/933f/10247989/109cc9a337f0/fnins-17-1180816-g001.jpg

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