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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Feedback modulates the temporal scale-free dynamics of brain electrical activity in a hypothesis testing task.
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Feedback modulates the temporal scale-free dynamics of brain electrical activity in a hypothesis testing task.

机译:反馈可在假设测试任务中调节大脑电活动的时间无尺度动态。

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摘要

We used the electroencephalogram (EEG) to investigate whether positive and negative performance feedbacks exert different long-lasting modulations of electrical activity in a reasoning task. Nine college students serially tested hypotheses concerning a hidden rule by judging its presence or absence in triplets of digits, and revised them on the basis of an exogenous performance feedback. The scaling properties of the transition period between feedback and triplet presentation were investigated with detrended fluctuation analysis (DFA). DFA showed temporal scale-free dynamics of EEG activity in both feedback conditions for time scales larger than 150 ms. Furthermore, DFA revealed that negative feedback elicits significantly higher scaling exponents than positive feedback. This effect covers a wide network comprising parieto-occipital and left frontal regions. We thus showed that specific task demands can modify the temporal scale-free dynamics of the ongoing brain activity. Putative neural correlates ofthese long-lasting feedback-specific modulations are proposed.
机译:我们使用脑电图(EEG)来研究正向和负向性能反馈在推理任务中是否施加了不同的持久性电活动调节。九名大学生通过判断数字中三元组是否存在隐性规则来连续检验假设,并根据外在绩效反馈对其进行修订。使用去趋势波动分析(DFA)研究了反馈和三重态表示之间过渡期的缩放性质。 DFA在两种反馈条件下均显示时间尺度大于150 ms的EEG活动的无时间尺度动态。此外,DFA还显示,与正反馈相比,负反馈引起的缩放指数明显更高。这种效果覆盖了包括顶枕和左额叶区域在内的广泛网络。因此,我们证明了特定的任务需求可以修改正在进行的大脑活动的无时间尺度动态。提出了这些持久的反馈特定调制的假定神经相关性。

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