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在单一连续监测任务中,对运动前、运动中和运动后相关的 alpha 和 beta 振荡进行组和个体分析。

Group and individual analyses of pre-, peri-, and post-movement related alpha and beta oscillations during a single continuous monitoring task.

机构信息

Department of Psychology, University of Portsmouth, King Henry I Street, Portsmouth PO1 2DY, United Kingdom.

Tom Rudd Unit, Moorgreen Hospital, West End, Southampton SO30 3JB, United Kingdom.

出版信息

Int J Psychophysiol. 2017 Oct;120:108-117. doi: 10.1016/j.ijpsycho.2017.07.009. Epub 2017 Jul 21.

Abstract

Band power linked to lower and upper alpha (i.e. 8-10Hz; 10-12Hz) and lower and upper beta (i.e. 12-20Hz; 20-30Hz) were examined during response related stages, including anticipation, response execution (RE), response inhibition (RI) and post response recovery (PRR). Group and individual data from 34 participants were considered. The participant's objective was to press a response key immediately following 4 non-repeating, single integer odd digits. These were presented amongst a continuous stream of digits and Xs. Electroencephalogram (EEG) signals were recorded from 32 electrodes (pooled to 12 regions). In the group analyses, participant EEG response was compared to baseline revealing that upper alpha desynchronised during anticipation, RE and RI; lower beta during anticipation and RE; and upper beta just RE. Upper alpha desynchronisation during rapid, unplanned RI is novel. Also, upper alpha and lower/upper beta synchronised during PRR. For upper alpha, we speculate this indexes brief cortical deactivation; for beta we propose this indexes response set maintenance. Lastly, lower alpha fluctuations correlated negatively with RT, indexing neural efficiency. Individual analyses involved calculation of the proportion of individuals displaying the typical RE and PRR trends; these were not reflected by all participants. The former was displayed individually by the largest proportion in upper alpha recorded left fronto-centrally; the latter was most reliably displayed individually in lower beta recorded mid centro-parietally. Therefore, group analyses identified typical alpha and beta synchronisation/desynchronisation trends, whilst individual analyses identified their degree of representation in single participants. Attention is drawn to the clinical relevance of this issue.

摘要

在与反应相关的阶段(包括预期、反应执行(RE)、反应抑制(RI)和反应后恢复(PRR))期间,检查了频段功率与较低和较高的阿尔法(即 8-10Hz;10-12Hz)和较低和较高的贝塔(即 12-20Hz;20-30Hz)之间的关系。考虑了来自 34 名参与者的组和个体数据。参与者的目标是在 4 个非重复的单个整数奇数位出现后立即按下响应键。这些数字与连续的数字和 X 一起出现。从 32 个电极(汇集到 12 个区域)记录脑电图(EEG)信号。在组分析中,将参与者的 EEG 反应与基线进行比较,结果表明在上一个预期、RE 和 RI 期间,阿尔法的上部去同步;在下一个预期和 RE 期间,贝塔的下部去同步;在仅仅 RE 期间,贝塔的上部去同步。在上一个预期、RE 和 RI 期间,快速、无计划的 RI 中出现的阿尔法的上部去同步是新颖的。此外,在上一个预期、RE 和 RI 期间,阿尔法的上部和贝塔的下部/上部同步。对于阿尔法的上部,我们推测这是短暂的皮质去激活指数;对于贝塔,我们提出这是反应集维持指数。最后,下一个阿尔法的波动与 RT 呈负相关,索引神经效率。个体分析涉及计算显示典型的 RE 和 PRR 趋势的个体比例;这些并不是所有参与者都反映出来的。前者在记录的左额-中央前区的阿尔法的上部中以最大的比例个体出现;后者在记录的中-顶-后区的贝塔的下部中以最可靠的方式个体出现。因此,组分析确定了典型的阿尔法和贝塔同步/去同步趋势,而个体分析则确定了它们在单个参与者中的表现程度。这一问题的临床相关性引起了人们的关注。

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