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Neural signatures of stimulus features in visual working memory--a spatiotemporal approach.

机译:视觉工作记忆中刺激特征的神经特征-一种时空方法。

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We examined the neural signatures of stimulus features in visual working memory (WM) by integrating functional magnetic resonance imaging (fMRI) and event-related potential data recorded during mental manipulation of colors, rotation angles, and color-angle conjunctions. The N200, negative slow wave, and P3b were modulated by the information content of WM, and an fMRI-constrained source model revealed a progression in neural activity from posterior visual areas to higher order areas in the ventral and dorsal processing streams. Color processing was associated with activity in inferior frontal gyrus during encoding and retrieval, whereas angle processing involved right parietal regions during the delay interval. WM for color-angle conjunctions did not involve any additional neural processes. The finding that different patterns of brain activity underlie WM for color and spatial information is consistent with ideas that the ventral/dorsal "what/where" segregation of perceptual processing influences WM organization. The absence of characteristic signatures of conjunction-related brain activity, which was generally intermediate between the 2 single conditions, suggests that conjunction judgments are based on the coordinated activity of these 2 streams.
机译:我们通过整合功能磁共振成像(fMRI)和在对颜色,旋转角度和色角连词进行心理操纵期间记录的与事件相关的潜在数据,来检查视觉工作记忆(WM)中刺激特征的神经信号。 N200,负慢波和P3b由WM的信息内容调制,并且功能磁共振成像约束的源模型揭示了神经活动从腹侧和背侧加工流中的后视区到更高阶区域的进展。在编码和检索过程中,颜色处理与额下回的活动有关,而在延迟间隔期间,角度处理涉及右顶壁区域。色角连词的WM不涉及任何其他神经过程。 WM提供不同颜色和空间信息的大脑活动的不同模式的发现,与感知加工的腹/背“何处/何处”分离影响WM组织的观点相一致。缺乏与结伴相关的大脑活动的特征性特征(通常介于这两个单一条件之间),表明对结语的判断是基于这两个流的协调活动。

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