Reflections on Mirror Therapy

楔前 运动前皮质 镜像神经元 物理医学与康复 神经影像学 神经科学 皮质脊髓束 心理学 辅助电机区 功能磁共振成像 初级运动皮层 运动表象 背外侧前额叶皮质 认知 后扣带 医学 运动皮层 前额叶皮质 磁共振成像 脑-机接口 脑电图 磁共振弥散成像 放射科 刺激 解剖
作者
Frederik Deconinck,Ana R.P. Smorenburg,Alex Benham,Annick Ledebt,Max G. Feltham,Geert J.P. Savelsbergh
出处
期刊:Neurorehabilitation and Neural Repair [SAGE]
卷期号:29 (4): 349-361 被引量:260
标识
DOI:10.1177/1545968314546134
摘要

Background. Mirror visual feedback (MVF), a phenomenon where movement of one limb is perceived as movement of the other limb, has the capacity to alleviate phantom limb pain or promote motor recovery of the upper limbs after stroke. The tool has received great interest from health professionals; however, a clear understanding of the mechanisms underlying the neural recovery owing to MVF is lacking. Objective. We performed a systematic review to assess the effect of MVF on brain activation during a motor task. Methods. We searched PubMed, CINAHL, and EMBASE databases for neuroimaging studies investigating the effect of MVF on the brain. Key details for each study regarding participants, imaging methods, and results were extracted. Results. The database search yielded 347 article, of which we identified 33 suitable for inclusion. Compared with a control condition, MVF increases neural activity in areas involved with allocation of attention and cognitive control (dorsolateral prefrontal cortex, posterior cingulate cortex, S1 and S2, precuneus). Apart from activation in the superior temporal gyrus and premotor cortex, there is little evidence that MVF activates the mirror neuron system. MVF increases the excitability of the ipsilateral primary motor cortex (M1) that projects to the “untrained” hand/arm. There is also evidence for ipsilateral projections from the contralateral M1 to the untrained/affected hand as a consequence of training with MVF. Conclusion. MVF can exert a strong influence on the motor network, mainly through increased cognitive penetration in action control, though the variance in methodology and the lack of studies that shed light on the functional connectivity between areas still limit insight into the actual underlying mechanisms.

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