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手、腕和手臂肌肉的运动诱发电位同步记录以评估皮质脊髓发散。

Simultaneous Recording of Motor Evoked Potentials in Hand, Wrist and Arm Muscles to Assess Corticospinal Divergence.

机构信息

Department of Physical Therapy and Rehabilitation Science, Carver College of Medicine, University of Iowa, Iowa City, IA, USA.

Department of Health and Human Physiology, University of Iowa, Iowa City, IA, USA.

出版信息

Brain Topogr. 2021 Jul;34(4):415-429. doi: 10.1007/s10548-021-00845-1. Epub 2021 May 4.

Abstract

The purpose of this study was to further develop methods to assess corticospinal divergence and muscle coupling using transcranial magnetic stimulation (TMS). Ten healthy right-handed adults participated (7 females, age 34.0 ± 12.9 years). Monophasic single pulses were delivered to 14 sites over the right primary motor cortex at 40, 60, 80 and 100% of maximum stimulator output (MSO), using MRI-based neuronavigation. Motor evoked potentials (MEPs) were recorded simultaneously from 9 muscles of the contralateral hand, wrist and arm. For each intensity, corticospinal divergence was quantified by the average number of muscles that responded to TMS per cortical site, coactivation across muscle pairs as reflected by overlap of cortical representations, and correlation of MEP amplitudes across muscle pairs. TMS to each muscle's most responsive site elicited submaximal MEPs in most other muscles. The number of responsive muscles per cortical site and the extent of coactivation increased with increasing intensity (ANOVA, p < 0.001). In contrast, correlations of MEP amplitudes did not differ across the 60, 80 and 100% MSO intensities (ANOVA, p = 0.34), but did differ across muscle pairs (ANOVA, p < 0.001). Post hoc analysis identified 4 sets of muscle pairs (Tukey homogenous subsets, p < 0.05). Correlations were highest for pairs involving two hand muscles and lowest for pairs that included an upper arm muscle. Correlation of MEP amplitudes may quantify varying levels of muscle coupling. In future studies, this approach may be a biomarker to reveal altered coupling induced by neural injury, neural repair and/or motor learning.

摘要

本研究旨在进一步开发使用经颅磁刺激(TMS)评估皮质脊髓发散和肌肉耦合的方法。 10 名健康的右利手成年人参与了研究(7 名女性,年龄 34.0±12.9 岁)。使用基于 MRI 的神经导航,在右初级运动皮层的 14 个部位以 40%、60%、80%和 100%最大刺激器输出(MSO)给予单相单脉冲。同时从对侧手、手腕和手臂的 9 块肌肉记录运动诱发电位(MEP)。对于每个强度,通过每个皮质部位响应 TMS 的肌肉的平均数量、皮质代表之间的肌肉对的共激活程度(反映为重叠)以及肌肉对的 MEP 幅度相关性来量化皮质脊髓发散。对每个肌肉最敏感部位的 TMS 诱发出大多数其他肌肉的亚最大 MEP。皮质部位的反应肌肉数量和共激活程度随着强度的增加而增加(ANOVA,p<0.001)。相比之下,MEP 幅度的相关性在 60%、80%和 100%MSO 强度之间没有差异(ANOVA,p=0.34),但在肌肉对之间存在差异(ANOVA,p<0.001)。事后分析确定了 4 组肌肉对(Tukey 同质性子集,p<0.05)。涉及两个手部肌肉的肌肉对的相关性最高,而包括上臂肌肉的肌肉对的相关性最低。MEP 幅度的相关性可能量化了不同水平的肌肉耦合。在未来的研究中,这种方法可能是一种生物标志物,可以揭示神经损伤、神经修复和/或运动学习引起的耦合变化。

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本文引用的文献

1
Principles of Intrinsic Motor Cortex Connectivity in Primates.灵长类动物内rinsic 运动皮层连接原理。
J Neurosci. 2020 May 27;40(22):4348-4362. doi: 10.1523/JNEUROSCI.0003-20.2020. Epub 2020 Apr 23.
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Perspectives on classical controversies about the motor cortex.关于运动皮层经典争议的观点
J Neurophysiol. 2017 Sep 1;118(3):1828-1848. doi: 10.1152/jn.00795.2016. Epub 2017 Jun 14.
10
Brain Connectivity Associated with Muscle Synergies in Humans.人类中与肌肉协同作用相关的脑连接
J Neurosci. 2015 Nov 4;35(44):14708-16. doi: 10.1523/JNEUROSCI.1971-15.2015.

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