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fMRI 揭示的动作词记忆的大脑关联

Brain correlates of action word memory revealed by fMRI.

机构信息

Cognition and Brain Sciences Unit, University of Cambridge, 15 Chaucer Road, Cambridge, CB2 7EF, UK.

Psychology Department, Sultan Qaboos University, Muscat, Oman.

出版信息

Sci Rep. 2022 Sep 26;12(1):16053. doi: 10.1038/s41598-022-19416-w.

Abstract

Understanding language semantically related to actions activates the motor cortex. This activation is sensitive to semantic information such as the body part used to perform the action (e.g. arm-/leg-related action words). Additionally, motor movements of the hands/feet can have a causal effect on memory maintenance of action words, suggesting that the involvement of motor systems extends to working memory. This study examined brain correlates of verbal memory load for action-related words using event-related fMRI. Seventeen participants saw either four identical or four different words from the same category (arm-/leg-related action words) then performed a nonmatching-to-sample task. Results show that verbal memory maintenance in the high-load condition produced greater activation in left premotor and supplementary motor cortex, along with posterior-parietal areas, indicating that verbal memory circuits for action-related words include the cortical action system. Somatotopic memory load effects of arm- and leg-related words were observed, but only at more anterior cortical regions than was found in earlier studies employing passive reading tasks. These findings support a neurocomputational model of distributed action-perception circuits (APCs), according to which language understanding is manifest as full ignition of APCs, whereas working memory is realized as reverberant activity receding to multimodal prefrontal and lateral temporal areas.

摘要

理解与动作相关的语义语言会激活运动皮层。这种激活对语义信息很敏感,例如执行动作时使用的身体部位(例如手臂/腿部相关的动作词)。此外,手部/脚部的运动可以对动作词的记忆保持产生因果影响,这表明运动系统的参与延伸到了工作记忆。本研究使用事件相关 fMRI 检查了与动作相关的词的言语记忆负荷的大脑相关性。十七名参与者观看了四个相同的或四个不同的来自同一范畴的词(手臂/腿部相关的动作词),然后执行了一个不匹配样本任务。结果表明,在高负荷条件下进行言语记忆保持会导致左前运动皮层和辅助运动皮层以及后顶叶区域的更大激活,表明与动作相关的词的言语记忆回路包括皮质动作系统。观察到与手臂和腿部相关的词的躯体记忆负荷效应,但仅在前部皮质区域比使用被动阅读任务的早期研究中发现的更明显。这些发现支持分布式动作感知回路 (APC) 的神经计算模型,根据该模型,语言理解表现为 APC 的完全激发,而工作记忆则表现为向多模态前额叶和外侧颞叶区域的回荡活动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f612/9512810/8f499ea61cad/41598_2022_19416_Fig1_HTML.jpg

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