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Interactivity mitigates the impact of working memory depletion on mental arithmetic performance

机译:交互性减轻了工作记忆耗尽对心算能力的影响

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摘要

Doing long sums in the absence of complementary actions or artefacts is a multistep procedure that quickly taxes working memory; congesting the phonological loop further handicaps performance. In the experiment reported here, participants completed long sums either with hands down – the low interactivity condition – or by moving numbered tokens – the high interactivity condition – while they repeated “the” continuously, loading the phonological loop, or not. As expected, interactivity and articulatory suppression substantially affected performance; critically, the effect of articulatory suppression was stronger in the low than in the high interactivity condition. In addition, an independent measure of mathematics anxiety predicted the impact of articulatory suppression on performance only in the low (not high) interactivity condition. These findings suggest that interactivity augmented overall or systemic working memory resources and diminished the effect of mathematics anxiety, underscoring the importance of characterizing the properties of the system as it is configured by the dynamic agent-environment coupling
机译:在没有补充动作或人工制品的情况下进行长时间累加是一个多步骤的过程,该过程会快速增加工作记忆的负担。阻塞语音回路进一步阻碍了演奏。在这里报告的实验中,参与者要么放下手(低交互条件),要么通过移动编号的令牌(高交互条件),完成了很长的一笔,而他们不断重复“该”,是否加载语音回路。不出所料,交互性和咬合抑制会严重影响性能。至关重要的是,在低互动条件下,比在高互动条件下的发音抑制效果更强。此外,一项数学焦虑的独立测量方法仅在低(不高)交互性条件下预测了关节抑制对表演的影响。这些发现表明,交互性增加了整体或系统的工作记忆资源,并减少了数学焦虑的影响,强调了表征系统特性的重要性,因为该特性是由动态主体-环境耦合配置的

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