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Pursuing the flow of information: Connectivity between bilateral premotor cortices predicts better accuracy in the phonological working memory task

机译:追求信息流:双侧运动前皮质之间的连通性可预测语音工作记忆任务中的更好准确性

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Using Magnetoencephalography (MEG) we studied functional connectivity of cortical areas during phonological working memory task. Six subjects participated in the experiment and their neuronal activity was measured by a 306-channel MEG system. We used a modified version of the visual Sternberg paradigm, which required subjects to memorize 8 alphabet letters in 2s for a late recall period. We estimated functional connectivity of oscillatory regional brain activities during the encoding session for each trial of each subject using beamformer source reconstruction and Granger causality analysis. Regional brain activities were mostly found in the bilateral premotor cortex (Brodmann area (BA) 6: PMC), the right dorsolateral prefrontal cortex (BA 9: DLPFC), and the right frontal eye field (BA 8). Considering that the left and right PMCs participate in the functions of phonological loop (PL) and the visuospatial sketchpad (VS) in the Baddeley's model of working memory, respectively, our result suggests that subjects utilized either single function or both functions of working memory circuitry to execute the task. Interestingly, the accuracy of the task was significantly higher in the trials where the alpha band oscillatory activities in the bilateral PMCs established functional connectivity compared to those where the PMC was not working in conjunction with its counterpart. Similar relationship was found in the theta band oscillatory activities between the right PMC and the right DLPFC, however in this case the establishment of functional connectivity significantly decreased the accuracy of the task. These results suggest that sharing the memory load with both PL- and VS- type memory storage circuitries contributed to better performance in the highly-demanding cognitive task.
机译:使用脑磁图(MEG),我们研究了语音工作记忆任务期间皮质区域的功能连接性。六名受试者参加了该实验,并通过306通道MEG系统测量了它们的神经元活性。我们使用了视觉Sternberg范例的修改版本,该范例要求受试者在较晚的回忆期内以2秒的速度记住8个字母。我们使用波束形成器源重构和Granger因果分析,估计了每个受试者的每个试验在编码阶段的振荡区域大脑活动的功能连通性。区域性脑活动主要见于双侧前运动皮层(Brodmann Area(BA)6:PMC),右背外侧前额叶皮层(BA 9:DLPFC)和右额眼视野(BA 8)。考虑到左PMC和右PMC分别参与Baddeley工作记忆模型中的语音环(PL)和视觉空间画板(VS)的功能,我们的结果表明受试者使用了工作记忆电路的单一功能或全部功能执行任务。有趣的是,与PMC不能与其配对物协同工作的情况相比,在双边PMC的α波段振荡活动建立了功能连通性的试验中,任务的准确性明显更高。在右PMC和右DLPFC之间的θ带振荡活动中发现了类似的关系,但是在这种情况下,功能连接的建立显着降低了任务的准确性。这些结果表明,与PL型和VS型存储器存储电路共享存储器负载有助于提高对高要求认知任务的性能。

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