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Fronto-parietal network oscillations reveal relationship between working memory capacity and cognitive control

机译:额顶网络振荡揭示了工作记忆能力与认知控制之间的关系

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摘要

Executive-attention theory proposes a close relationship between working memory capacity (WMC) and cognitive control abilities. However, conflicting results are documented in the literature, with some studies reporting that individual variations in WMC predict differences in cognitive control and trial-to-trial control adjustments (operationalized as the size of the congruency effect and congruency sequence effects, respectively), while others report no WMC-related differences. We hypothesized that brain network dynamics might be a more sensitive measure of WMC-related differences in cognitive control abilities. Thus, in the present study, we measured human EEG during the Simon task to characterize WMC-related differences in the neural dynamics of conflict processing and adaptation to conflict. Although high- and low-WMC individuals did not differ behaviorally, there were substantial WMC-related differences in theta (4–8 Hz) and delta (1–3 Hz) connectivity in fronto-parietal networks. Group differences in local theta and delta power were relatively less pronounced. These results suggest that the relationship between WMC and cognitive control abilities is more strongly reflected in large-scale oscillatory network dynamics than in spatially localized activity or in behavioral task performance.
机译:执行注意理论提出了工作记忆能力(WMC)与认知控制能力之间的密切关系。但是,文献中记录了相矛盾的结果,一些研究报告说,WMC中的个体差异预测了认知控制和试验至试验控制调整的差异(分别适用于一致性效应和一致性序列效应的大小),而其他报告没有WMC相关的差异。我们假设大脑网络动力学可能是WMC相关的认知控制能力差异的更敏感指标。因此,在本研究中,我们在Simon任务期间测量了人类的脑电图,以表征与WMC相关的冲突处理和适应冲突的神经动力学差异。尽管高WMC和低WMC的个体在行为上没有差异,但额顶网络中的theta(4-8 Hz)和delta(1-3 Hz)连接性方面存在与WMC相关的实质性差异。局部theta和delta功效的组差异相对不太明显。这些结果表明,WMC与认知控制能力之间的关系在大规模振荡网络动力学中比在空间局部活动或行为任务执行中更强烈地反映出来。

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