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Time–Frequency and ERP Analyses of EEG to Characterize Anticipatory Postural Adjustments in a Bimanual Load-Lifting Task

机译:脑电的时频和ERP分析以表征双向负荷提升任务中的预期姿势调整

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摘要

Anticipatory postural adjustments (APAs) compensate in advance for the destabilizing effect of a movement. This study investigated the specific involvement of each primary motor cortex (M1) during a bimanual load-lifting task in which subjects were required to maintain a stable forearm position during voluntary unloading. Kinematics, electromyographic, and electroencephalographic (EEG) data were recorded in eight right-handed healthy subjects lifting a load placed on their left forearm. Two EEG analyses were performed: a time–frequency (TF) analysis and an event-related potential (ERP) analysis. The TF analysis revealed a mean power decrease in the mu rhythm over the left and right M1 concomitant with lifting onset. Each decrease showed specific features: over the right M1, contralateral to the postural forearm, there was a steeper slope and a greater amplitude than over the left M1. Although a mu rhythm desynchronization has until now been the signature of cortical activity related to a motor component, we show that it can also be related to postural stabilization. We discuss the involvement of the mu rhythm desynchronization over the postural M1 in the high temporal precision enabling efficient APAs. ERP analysis showed a negative wave over the left M1 and a concomitant positive wave over the right M1. While the negative wave classically reflects M1 recruitment related to the forthcoming lifting, the novelty here is that the positive wave reflects the transmission of inhibitory commands toward the postural forearm.
机译:预期的姿势调整(APA)可以预先补偿机芯的不稳定作用。这项研究调查了在进行双手负重任务期间每个主运动皮层(M1)的具体参与情况,在这些任务中,受试者需要在自愿卸载过程中保持稳定的前臂位置。运动,肌电图和脑电图(EEG)数据记录在八名右撇子健康受试者中,抬起左前臂的负重。进行了两次EEG分析:时间频率(TF)分析和事件相关电位(ERP)分析。 TF分析显示,左M1和右M1的mu节律平均功率下降,同时起病发作。每次下降都显示出特定的特征:在右侧M1(与姿势前臂对侧),比左侧M1的倾斜更陡,振幅更大。尽管到目前为止,节奏不同步是与运动成分有关的皮层活动的标志,但我们证明它也可能与姿势稳定有关。我们讨论了在高时间精度下启用有效APA的姿势M1的mu节奏不同步问题。 ERP分析显示左侧M1处为负波,右侧M1为相伴正波。虽然负波经典地反映了与即将发生的抬高有关的M1募集,但这里的新颖之处在于,正波反映了抑制命令向姿势前臂的传递。

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