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一般领域的斯特鲁普任务表现与半球不对称性:一项静息态脑电图研究

Domain-general Stroop Performance and Hemispheric Asymmetries: A Resting-state EEG Study.

作者信息

Ambrosini Ettore, Vallesi Antonino

机构信息

University of Padua.

IRCCS San Camillo Hospital Foundation, Lido-Venice, Italy.

出版信息

J Cogn Neurosci. 2017 May;29(5):769-779. doi: 10.1162/jocn_a_01076. Epub 2016 Nov 29.

Abstract

The ability to suppress irrelevant information while executing a task, also known as interference resistance ability, is a function of pFC that is critical for successful goal-directed human behavior. In the study of interference resistance and, more generally, executive functions, two key questions are still open: Does pFC contribute to cognitive control abilities through lateralized but domain-general mechanisms or through hemispheric specialization of domain-specific processes? And what are the underlying causes of interindividual differences in executive control performance? To shed light on these issues, here we employed an interindividual difference approach to investigate whether participants' hemispheric asymmetry in resting-state electrophysiological brain dynamics may reflect their variability in domain-general interference resistance. We recorded participants' resting-state electroencephalographic activity and performed spectral power analyses on the estimated cortical source activity. To measure participants' lateralized brain dynamics at rest, we computed the right-left hemispheric asymmetry score for the β/α power ratio. To measure their domain-general interference resistance ability, verbal and spatial Stroop tasks were used. Robust correlations followed by intersection analyses showed that participants with stronger resting-state-related left-lateralized activity in different pFC regions, namely the mid-posterior superior frontal gyrus, middle and posterior middle frontal gyrus, and inferior frontal junction, were more able to inhibit irrelevant information in both domains. The present results confirm and extend previous findings showing that neurophysiological difference factors may explain interindividual differences in executive functioning. They also provide support for the hypothesis of a left pFC hemispheric specialization for domain-independent phasic cognitive control processes mediating Stroop performance.

摘要

在执行任务时抑制无关信息的能力,也称为抗干扰能力,是前额叶皮质(pFC)的一项功能,对人类成功的目标导向行为至关重要。在抗干扰研究以及更广泛的执行功能研究中,仍有两个关键问题尚未解决:pFC是通过侧化但领域通用的机制,还是通过特定领域过程的半球特化来促进认知控制能力?执行控制表现个体差异的潜在原因是什么?为了阐明这些问题,我们采用个体差异方法来研究参与者静息状态下脑电生理动力学的半球不对称性是否可能反映其在领域通用抗干扰能力方面的变异性。我们记录了参与者的静息状态脑电图活动,并对估计的皮质源活动进行了频谱功率分析。为了测量参与者静息时的侧化脑动力学,我们计算了β/α功率比的左右半球不对称分数。为了测量他们的领域通用抗干扰能力,我们使用了言语和空间Stroop任务。稳健的相关性及交叉分析表明,在不同的前额叶皮质区域,即额上回中后部、额中回中部和后部以及额下交界区,静息状态相关的左侧化活动较强的参与者在两个领域中更能抑制无关信息。目前的结果证实并扩展了先前的研究结果,表明神经生理差异因素可能解释执行功能的个体差异。它们还为左前额叶皮质半球在介导Stroop表现的领域独立相位认知控制过程中特化的假设提供了支持。

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