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Temporal changes of beta rhythms and rotation-related negativity reflect switches in motor imagery

机译:β节奏的时空变化和与旋转相关的负性反映了运动图像中的开关

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While motor imagery has been known as a powerful tool for neuro-rehabilitation in stroke patients, whether this technique is also effective for other brain disorders is unclear. For instance, patients with Parkinson's disease or attention-deficit hyperactivity disorder who are impaired at real motor switching may benefit therapeutically from training that consists of switching their imagined motor movements, and eventually recover from the dysfunction. However, despite its importance little is known about exactly how switching mental images of one's actions is processed in the brain. Therefore, we set out to clarify this issue by measuring brain activity reflected in electroencephalograms as subjects switched an imagined hand rotation from one hand to the other during a motor-imagery task. By comparing electroencephalogram signals from repeated mental imaging of hand movements, we found a switch-specific decrease in the beta-band activity in parietal and frontal regions around 0.6 s after stimulus presentation. Further, we found rotation-related negativity in the parietal cortex at the same time as the decreased beta-band power. These results suggest that the parietal area is dynamically involved in the switching of imagined hand motion, and that frontal areas may have an important role in inhibiting mental imagery of the deselected hand's motion.
机译:虽然运动成像已被视为中风患者神经康复的有力工具,但尚不清楚该技术是否对其他脑部疾病也有效。例如,在真正的运动转换过程中受损的帕金森氏病或注意力不足过动症患者可能会从训练中受益,该训练包括改变他们想象中的运动动作,并最终从功能障碍中恢复过来。然而,尽管它很重要,但人们对如何准确地在大脑中处理一个人的动作的心理图像一无所知。因此,我们着手通过测量脑电图中反映的大脑活动来阐明这个问题,因为在运动图像任务中,受试者将想象中的手从一只手换到另一只手旋转。通过比较重复的手部动作的心理成像得到的脑电图信号,我们发现刺激出现后约0.6 s,顶叶和额叶区域的β谱带活动降低了开关特异性。此外,我们发现与降低的β带功率同时,在顶叶皮质中旋转相关的负性。这些结果表明,顶叶区域动态地参与了想象中的手部运动的切换,而额叶区域可能在抑制被取消选择的手部运动的心理形象方面起着重要的作用。

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