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Motor cortex excitability is tightly coupled to observed movements

机译:运动皮层的兴奋性与观察到的运动紧密相关

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Although facilitation of the corticospinal (CS) system during action observation is a widely accepted phenomenon, it is still controversial if facilitation reflects the replica of observed movement kinematics or the tension to achieve a particular goal. In this study, transcranial magnetic stimulation (TMS)-induced motor evoked potentials (MEPs) were recorded from the abductor digiti minimi (ADM) and the first dorsal interosseus (FDI) muscles while participant-volunteers observed a model grasping a small target eliciting a precision grip or a large target eliciting a whole hand grasp directed toward an isolated object or flanked by different sized objects (i.e., distractor). A detailed movement analysis revealed that the model's kinematics were influenced by the distractor's size. Video clips filming the scene were edited in such a way that the distractor was removed from the scene. Participant-volunteers were asked to observe actions characterized by the same goal but performed using different kinematical patterns. Although the differences in movement kinematics were not noticed by the participant-volunteers, they nonetheless elicited distinct configurations of corticospinal activation. Detailed motor matching seems to recruit the same muscles in the onlooker as in the person actually carrying out the action during observation of grasping actions. These effects appear to be elicited by very subtle, imperceptible aspects of observed actions pointing to a finely tuned mechanism that specifically encodes body parts.
机译:尽管在动作观察过程中对皮质脊髓(CS)系统的促进是一种广为接受的现象,但如果促进反映了观察到的运动学的复制品或达到特定目标的张力,仍然存在争议。在这项研究中,记录了经颅磁刺激(TMS)引起的小指外展肌(ADM)和第一背骨间肌(FDI)肌肉的运动诱发电位(MEP),而参与者志愿者观察到了一个模型,该模型抓住了一个小目标,引起精确的抓地力或较大的目标,导致整个手抓地力指向孤立的对象,或侧翼是不同大小的对象(即分心器)。详细的运动分析表明,模型的运动学受牵张器尺寸的影响。剪辑拍摄场景的视频剪辑,以将干扰因素从场景中移除。要求参与者志愿者观察以相同目标为特征但以不同运动学模式执行的动作。尽管参与者的运动并未注意到运动运动学上的差异,但它们引起了皮质脊髓激活的独特构型。详细的运动匹配似乎在围观者中招募了与观察抓握动作时实际执行动作的人相同的肌肉。这些效果似乎是由观察到的动作的非常微妙的,难以察觉的方面引起的,这些动作指向专门编码身体部位的微调机制。

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