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Working Memory Overload: Fronto-Limbic Interactions and Effects on Subsequent Working Memory Function

机译:工作记忆超载:额肢相互作用及其对随后工作记忆功能的影响

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摘要

The human working memory system provides an experimentally useful model for examination of neural overload effects on subsequent functioning of the overloaded system. This study employed functional magnetic resonance imaging in conjunction with a parametric working memory task to characterize the behavioral and neural effects of cognitive overload on subsequent cognitive performance, with particular attention to cognitive-limbic interactions. Overloading the working memory system was associated with varying degrees of subsequent decline in performance accuracy and reduced activation of brain regions central to both task performance and suppression of negative affect. The degree of performance decline was independently predicted by three separate factors operating during the overload condition: the degree of task failure, the degree of amygdala activation, and the degree of inverse coupling between the amygdala and dorsolateral prefrontal cortex. These findings suggest that vulnerability to overload effects in cognitive functioning may be mediated by reduced amygdala suppression and subsequent amygdala-prefrontal interaction.
机译:人类工作记忆系统为检验神经过载对过载系统的后续功能的影响提供了实验上有用的模型。这项研究采用功能磁共振成像结合参数化工作记忆任务来表征认知超负荷对随后的认知表现的行为和神经影响,并特别关注认知-肢体相互作用。工作记忆系统超负荷与随后不同程度的性能准确性下降以及减少对任务执行和抑制负面影响至关重要的大脑区域的激活有关。性能下降的程度由超负荷情况下的三个独立因素独立预测:任务失败的程度,杏仁核的激活程度以及杏仁核与背外侧前额叶皮层之间的反向耦合程度。这些发现表明,对认知功能超负荷影响的脆弱性可以通过减少杏仁核抑制和随后的杏仁核-前额叶相互作用来介导。

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