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Time-varying Brain Potentials and Interhemispheric Coherences of Anterior and Posterior Regions during Repetitive Unimanual Finger Movements

机译:重复性单手手指运动过程中前区和后区的时变脑电势和半球间连贯性

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摘要

Previous brain electrophysiological research has studied the interregional connectivity during the tapping task and found that inter-hemispheric alpha coherence was more significant under bimanual task conditions than that under unilateral conditions, but the interregional connectivity situation in the unilateral tapping condition was not explored clearly. We have designed a unilateral repetitive finger-tapping task to delineate the anterior and posterior cortex contributions to unilateral finger movement. Sixteen right handed college students participated in this study. Event related potentials (ERPs) and the strength of event related coherence (ERCoh) were analyzed to examine the antero-postero dominance of cortical activity in the phase of early visual process (75-120ms), pre-execution (175-260ms), execution (310-420ms) and post-execution (420-620ms). Results showed that the occipital (Oz, O1 and O2), frontal (Fz, F3, and F4), fronto-central (Fz, Cz, F3 and C3), and parietal regions were the most pronounced in the early visual, pre-execution, execution, and post-execution phases, respectively. Moreover, among four inter-hemispheric pairs only the Coh (C3 and C4) was significantly correlated to reaction time (RT) of tapping in the execution phase. In conclusion, the aforementioned variability of electrophysiological data (ERPs and coherence) and the change of antero-postero regional dominance with time reflect the relative importance of different mechanisms in different phases. The mechanisms of visual processing, motor planning, motor execution and feedback reward were operational, respectively.
机译:先前的脑电生理研究已经研究了攻丝任务期间的区域间连通性,发现在双手任务条件下半球间的α相干性比在单侧条件下更为重要,但是对单侧攻丝条件下的区域间连通性情况没有进行清楚的研究。我们设计了一个单侧重复手指敲击任务,以描绘前皮质和后皮质对单侧手指运动的贡献。十六名右撇子大学生参加了这项研究。分析了事件相关电位(ERP)和事件相关一致性的强度(ERCoh),以检查早期视觉过程(75-120ms),执行前(175-260ms)阶段皮质活动的前后位优势,执行(310-420ms)和执行后(420-620ms)。结果表明,在早期视觉,前视前,后视前期,枕骨(Oz,O1和O2),额叶(Fz,F3和F4),额中央(Fz,Cz,F3和C3)和顶叶区域最明显。执行,执行和执行后阶段。此外,在四个半球对之间,只有Coh(C3和C4)与执行阶段中敲击的反应时间(RT)显着相关。总之,上述电生理数据(ERP和相干性)的变化以及前后前后区域优势度的变化反映了不同阶段不同机制的相对重要性。视觉处理,运动计划,运动执行和反馈奖励的机制分别处于运行状态。

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