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Persistent neural activity during the maintenance of spatial position in working memory

机译:维持工作记忆空间位置期间的持续神经活动

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摘要

The mechanism for the short-term maintenance of information involves persistent neural activity during the retention interval, which forms a bridge between the cued memoranda and its later contingent response. Here, we used event-related functional magnetic resonance imaging to identify cortical areas with activity that persists throughout working memory delays with the goal of testing if such activity represents visuospatial attention or prospective saccade goals. We did so by comparing two spatial working memory tasks. During a memory-guided saccade (MGS) task, a location was maintained during a delay after which a saccade was generated to the remembered location. During a spatial item-recognition (SIR) task identical to MGS until after the delay, a button press indicated whether a newly cued location matched the remembered location. Activity in frontal and parietal areas persisted above baseline and was greater in the hemisphere contralateral to the cued visual field. However, delay-period activity did not differ between the tasks. Notably, in the putative frontal eye field (FEF), delay period activity did not differ despite that the precise metrics of the memory-guided saccade was known during the MGS delay and saccades were never made in SIR. Persistent FEF activity may therefore represent a prioritized attentional map of space, rather than the metrics for saccades.
机译:信息短期维护的机制涉及在保留间隔期间持续的神经活动,这在提示备忘录与其后来的偶然响应之间架起了一座桥梁。在这里,我们使用事件相关的功能磁共振成像来识别皮质区域,该皮质区域的活动在整个工作记忆延迟中持续存在,目的是测试这种活动是否代表视觉空间注意力或预期的扫视目标。我们通过比较两个空间工作记忆任务来做到这一点。在记忆引导扫视(MGS)任务期间,在延迟期间保持位置,此后将扫视生成到记忆的位置。直到延迟之后,在与MGS相同的空间项目识别(SIR)任务期间,按下按钮会指示新提示的位置是否与记住的位置匹配。额叶和顶叶区域的活动持续高于基线,并且在提示的视野对侧的半球活动增加。但是,任务之间的延迟期活动没有差异。值得注意的是,在假定的额眼视野(FEF)中,尽管在MGS延迟期间已知记忆引导扫视的精确度量,并且SIR从未进行过扫视,但延迟期活动没有差异。因此,持久性FEF活动可能表示优先的空间注意图,而不是扫视的度量。

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