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首页> 外文期刊>Brain research >'Can waiting awaken the resting brain?' A comparison of waiting- and cognitive task-induced attenuation of very low frequency neural oscillations
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'Can waiting awaken the resting brain?' A comparison of waiting- and cognitive task-induced attenuation of very low frequency neural oscillations

机译:“等待可以唤醒静息的大脑吗?”等待和认知任务引起的极低频神经振荡衰减的比较

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摘要

The default mode network (DMN) is characterised by coherent very low frequency (VLF) neural oscillations in the resting brain. The attenuation of this activity has been demonstrated following the transition from rest to performance of a broad range of cognitive goal-directed tasks. Whether the activity of resting state VLF oscillations is attenuated during non-cognitive goal-directed tasks such as waiting for rewarding outcomes is not known. This study examined the VLF EEG power from resting to performance of attention demanding task and two types of goal-directed waiting tasks. The association between the attenuation of VLF EEG power and Attention-Deficit/Hyperactivity Disorder (ADHD) symptoms was examined. Direct current EEG (DC-EEG) data were collected from 32 healthy young adults (half high and half low ADHD symptom scorers) during (i) a rest state, (ii) while performing a cognitive demanding reaction time task (2CRT), and (iii) while undertaking each of two different goal-directed waiting conditions: "forced-to-wait (FW)" and "choose-to-wait (CW)" tasks. The spatial distribution of VLF EEG power across scalp was similar to that seen in previous resting VLF EEG studies. Significant rest-to-task attenuation of VLF EEG power occurred during the 2CRT and the CW task, but not during the FW task. The association between self-ratings of ADHD symptoms and waiting-induced attenuation was not significant. This study suggests VLF EEG power attenuation that occurs following rest-to-task transition is not simply determined by changes in cognitive load. The goal-directed nature of a task, its motivated nature and/or the involvement of effortful attention may also contribute. Future studies should explore the attenuation of resting state VLF oscillations during waiting and impulsive choice. Crown
机译:默认模式网络(DMN)的特征在于静止的大脑中具有相干甚低频(VLF)神经振荡。从一系列认知目标定向任务的休息状态向执行状态转变之后,这种活动的减弱已得到证实。尚不清楚静止状态下的VLF振荡的活动是否在非认知目标导向任务(如等待奖励结果)中减弱。这项研究检查了从休息到注意要求任务的执行以及两种目标导向的等待任务的超低频脑电图功能。检查了VLF脑电功率衰减与注意力缺陷/多动障碍(ADHD)症状之间的关联。在(i)休息状态,(ii)执行认知要求的反应时间任务(2CRT)期间,从32位健康的年轻人(ADHD症状评分高低半高)中收集了直流EEG(DC-EEG)数据。 (iii)同时接受两种针对目标的等待条件:“强制等待(FW)”和“选择等待(CW)”任务。整个头皮的VLF EEG功率的空间分布与之前的静息VLF EEG研究相似。在2CRT和CW任务期间发生了VLF EEG功率从休息到任务的明显衰减,但在FW任务期间没有发生。 ADHD症状的自我评价与等待诱发的衰减之间的相关性不显着。这项研究表明,从静止到任务的过渡后发生的VLF EEG功率衰减并非简单地由认知负荷的变化确定。任务的目标导向性质,动机性质和/或努力关注的参与也可能有所贡献。未来的研究应该探索在等待和冲动选择过程中静止状态VLF振荡的衰减。王冠

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