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想象并非行动,但涉及特定的运动指令:与运动抑制相关的实验数据综述。

Imagining is Not Doing but Involves Specific Motor Commands: A Review of Experimental Data Related to Motor Inhibition.

作者信息

Guillot Aymeric, Di Rienzo Franck, Macintyre Tadhg, Moran Aidan, Collet Christian

机构信息

Centre de Recherche et d'Innovation sur le Sport (EA 647), équipe Performance Motrice, Mentale et du Matériel, Université de Lyon, Université Claude Bernard Lyon 1 Villeurbanne, France.

出版信息

Front Hum Neurosci. 2012 Sep 5;6:247. doi: 10.3389/fnhum.2012.00247. eCollection 2012.

Abstract

There is now compelling evidence that motor imagery (MI) and actual movement share common neural substrate. However, the question of how MI inhibits the transmission of motor commands into the efferent pathways in order to prevent any movement is largely unresolved. Similarly, little is known about the nature of the electromyographic activity that is apparent during MI. In addressing these gaps in the literature, the present paper argues that MI includes motor execution commands for muscle contractions which are blocked at some level of the motor system by inhibitory mechanisms. We first assemble data from neuroimaging studies that demonstrate that the neural networks mediating MI and motor performance are not totally overlapping, thereby highlighting potential differences between MI and actual motor execution. We then review MI data indicating the presence of subliminal muscular activity reflecting the intrinsic characteristics of the motor command as well as increased corticomotor excitability. The third section not only considers the inhibitory mechanisms involved during MI but also examines how the brain resolves the problem of issuing the motor command for action while supervising motor inhibition when people engage in voluntary movement during MI. The last part of the paper draws on imagery research in clinical contexts to suggest that some patients move while imagining an action, although they are not aware of such movements. In particular, experimental data from amputees as well as from patients with Parkinson's disease are discussed. We also review recent studies based on comparing brain activity in tetraplegic patients with that from healthy matched controls that provide insights into inhibitory processes during MI. We conclude by arguing that based on available evidence, a multifactorial explanation of motor inhibition during MI is warranted.

摘要

目前有令人信服的证据表明,运动想象(MI)和实际运动共享共同的神经基质。然而,运动想象如何抑制运动指令向传出通路的传递以防止任何运动这一问题在很大程度上尚未得到解决。同样,对于运动想象期间明显的肌电活动的本质知之甚少。为了解决文献中的这些空白,本文认为运动想象包括肌肉收缩的运动执行指令,这些指令在运动系统的某个水平被抑制机制阻断。我们首先汇总神经影像学研究的数据,这些数据表明介导运动想象和运动表现的神经网络并非完全重叠,从而突出了运动想象与实际运动执行之间的潜在差异。然后我们回顾运动想象数据,这些数据表明存在反映运动指令内在特征的阈下肌肉活动以及皮质运动兴奋性增加。第三部分不仅考虑了运动想象期间涉及的抑制机制,还研究了在人们进行运动想象时自愿运动期间,大脑如何在监督运动抑制的同时解决发出行动运动指令的问题。本文的最后一部分借鉴临床背景下的想象研究,表明一些患者在想象一个动作时会移动,尽管他们没有意识到这种运动。特别是,讨论了截肢者以及帕金森病患者的实验数据。我们还回顾了最近基于比较四肢瘫痪患者与健康匹配对照组大脑活动的研究,这些研究为运动想象期间的抑制过程提供了见解。我们最后认为,基于现有证据,有必要对运动想象期间的运动抑制进行多因素解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b5b/3433680/80ddfdb14e76/fnhum-06-00247-g001.jpg

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