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From storage to manipulation: How the neural correlates of verbal working memory reflect varying demands on inner speech

机译:从存储到操作:口头工作记忆的神经关联如何反映对内在语音的各种要求

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The ability to store and manipulate online information may be enhanced by an inner speech mechanism that draws upon motor brain regions. Neural correlates of this mechanism were examined using event-related functional magnetic resonance imaging (fMRI). Sixteen participants completed two conditions of a verbal working memory task. In both conditions, participants viewed one or two target letters. In the "storage" condition, these targets were held in mind across a delay. Then a probe letter was presented, and participants indicated by button press whether the probe matched the targets. In the "manipulation" condition, participants identified new targets by thinking two alphabetical letters forward of each original target (e.g., f → h). Participants subsequently indicated whether the probe matched the newly derived targets. Brain activity during the storage and manipulation conditions was examined specifically during the delay phase in order to directly compare manipulation versus storage processes. Activations that were common to both conditions, yet disproportionately greater with manipulation, were observed in the left inferior frontal cortex, premotor cortex, and anterior insula, bilaterally in the parietal lobes and superior cerebellum, and in the right inferior cerebellum. This network shares substrates with overt speech and may represent an inner speech pathway that increases activity with greater working memory demands. Additionally, an inverse correlation was observed between manipulation-related brain activity (on correct trials) and test accuracy in the left premotor cortex, anterior insula, and bilateral superior cerebellum. This inverse relationship may represent intensification of inner speech as one struggles to maintain performance levels.
机译:通过利用运动大脑区域的内部语音机制可以增强存储和操作在线信息的能力。使用事件相关功能磁共振成像(fMRI)检查了该机制的神经相关性。 16名参与者完成了口头工作记忆任务的两个条件。在这两种情况下,参与者都查看了一个或两个目标字母。在“存储”状态下,这些目标在延迟中始终牢记在心。然后出现一个探测字母,并通过按钮指示参与者是否探测与目标相符。在“操作”状态下,参与者通过思考每个原始目标前面的两个字母来确定新目标(例如f→h)。随后,参与者指出探针是否与新获得的靶标匹配。为了直接比较操纵与存储过程,特别在延迟阶段检查了在存储和操纵条件期间的大脑活动。在这两种情况下都很普遍,但在左侧额叶额叶皮层,运动前皮层和前岛岛,双侧顶叶和上小脑以及右下小脑中均观察到了激活。该网络共享带有公开语音的底物,并且可以表示内部语音路径,该语音路径会随着活动内存需求的增加而增加活动。此外,观察到与操纵有关的大脑活动(正确试验)与左运动前皮层,前岛鞘和双侧小脑上部的测试准确性之间呈负相关。这种反比关系可能表示人们在努力保持表现水平时内心言语的激化。

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