首页> 外文期刊>Journal of Neural Transplantation and Plasticity: Neural Plasticity >The Activation of the Mirror Neuron System during Action Observation and Action Execution with Mirror Visual Feedback in Stroke: A Systematic Review
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The Activation of the Mirror Neuron System during Action Observation and Action Execution with Mirror Visual Feedback in Stroke: A Systematic Review

机译:笔画中的镜像视觉反馈在动作观察和动作执行过程中镜像神经元系统的激活:系统综述

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Objective. To evaluate the concurrent and training effects of action observation (AO) and action execution with mirror visual feedback (MVF) on the activation of the mirror neuron system (MNS) and its relationship with the activation of the motor cortex in stroke individuals. Methods. A literature search using CINAHL, PubMed, PsycINFO, Medline, Web of Science, and SCOPUS to find relevant studies was performed. Results. A total of 19 articles were included. Two functional magnetic resonance imaging (fMRI) studies reported that MVF could activate the ipsilesional primary motor cortex as well as the MNS in stroke individuals, whereas two other fMRI studies found that the MNS was not activated by MVF in stroke individuals. Two clinical trials reported that long-term action execution with MVF induced a shift of activation toward the ipsilesional hemisphere. Five fMRI studies showed that AO activated the MNS, of which, three found the activation of movement-related areas. Five electroencephalography (EEG) studies demonstrated that AO or MVF enhanced mu suppression over the sensorimotor cortex. Conclusions. MVF may contribute to stroke recovery by revising the interhemispheric imbalance caused by stroke due to the activation of the MNS. AO may also promote motor relearning in stroke individuals by activating the MNS and motor cortex.
机译:目的。若要评估对中风个体中镜像神经元系统(MNS)的激活及其与运动皮层激活的关系,动作观察(AO)和动作执行与镜子视觉反馈(MVF)的并发和训练效果。方法。使用CINAHL,PubMed,PsycINFO,Medline,Web of Science和SCOPUS进行文献检索,以找到相关研究。结果。总共包括19篇文章。两项功能性磁共振成像(fMRI)研究报告说,MVF可以激活卒中患者的同侧原发性运动皮层以及MNS,而其他两项fMRI研究则发现MVF不能激活卒中患者的MNS。两项临床试验报告说,用MVF长期执行动作会导致激活转移到同侧半球。五项功能磁共振成像研究表明,AO激活了MNS,其中三项发现了运动相关区域的激活。五项脑电图(EEG)研究表明,AO或MVF增强了对感觉运动皮层的mu抑制。结论。 MVF可能会通过修正由于MNS激活而引起的卒中引起的半球间不平衡来促进卒中恢复。 AO还可以通过激活MNS和运动皮层来促进中风个体的运动再学习。

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