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反馈控制对隐蔽心理任务期间脑电图α波不对称性的影响。

Effects of feedback control on EEG alpha asymmetry during covert mental tasks.

作者信息

De Pascalis V, Silveri A

出版信息

Int J Psychophysiol. 1986 Jan;3(3):163-70. doi: 10.1016/0167-8760(86)90025-5.

Abstract

EEG alpha (8-12 Hz) was recorded bilaterally from O1-P3 and O2-P4 during two eyes-closed sessions in 40 women. During one session subjects performed two covert right-hemisphere activation tasks and two covert left-hemisphere activation tasks (no-biofeedback condition). During the other session subjects performed the same tasks while trying to control their EEG asymmetries, being provided with EEG asymmetry auditory feedback (biofeedback condition). The ratios of integrated EEG alpha amplitudes were calculated as measure of hemispheric asymmetry, and the number of times that the right and left alpha had the same phase angle was determined as index of hemispheric synchrony (alpha phase index). In both conditions, subjects rated orally after each task their degree of subjective fullfilment of the task. There were significant differences between the EEG asymmetry during right- and left-hemisphere tasks. Significant differences of integrated alpha amplitudes and ratios between the no-biofeedback and biofeedback condition were also found. There was more hemispheric asymmetry in the biofeedback than in the no-biofeedback condition, and a significantly higher alpha phase index. There was no correlation between fullfilment ratings and alpha ratios in the no-biofeedback condition, but there was such correlation during right and left hemisphere tasks in the biofeedback condition. The study demonstrated that biofeedback regulation and covert mental activity can have effects on EEG alpha asymmetry which are cumulative.

摘要

在40名女性闭眼的两个阶段,从双侧O1 - P3和O2 - P4记录脑电图α波(8 - 12赫兹)。在一个阶段,受试者执行两项隐蔽的右半球激活任务和两项隐蔽的左半球激活任务(无生物反馈条件)。在另一个阶段,受试者执行相同任务的同时尝试控制脑电图不对称性,并获得脑电图不对称听觉反馈(生物反馈条件)。计算脑电图α波积分振幅的比率作为半球不对称性的指标,并确定左右α波具有相同相位角的次数作为半球同步性指标(α相位指数)。在两种条件下,受试者在每个任务后口头评定其对任务的主观完成程度。右半球和左半球任务期间的脑电图不对称性存在显著差异。在无生物反馈和生物反馈条件之间,还发现了α波积分振幅和比率的显著差异。生物反馈条件下的半球不对称性比无生物反馈条件下更多,且α相位指数显著更高。在无生物反馈条件下,完成评定与α波比率之间没有相关性,但在生物反馈条件下,左右半球任务期间存在这种相关性。该研究表明,生物反馈调节和隐蔽的心理活动可对脑电图α波不对称性产生累积效应。

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