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Nonvisual Codes and Nonvisual Brain Areas Support Visual Working Memory

机译:非视觉代码和非视觉大脑区域支持视觉工作记忆

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摘要

Systems models hold working memory to depend on specialized, domain-specific storage buffers. Here, however, we demonstrate that short-term retention of the identity or location of visually presented stimuli is disrupted by nonvisual secondary tasks performed in the dark—passive listening to nouns or endogenous generation of saccades, respectively. This indicates that the short-term retention of visual information relies on multiple mental codes, some of them nonvisual. Event-related functional magnetic resonance imaging (fMRI) reveals the neural correlates of these interference effects to be more complex and more regionally specific than previously described. Although nonspecific dual-task effects produce a generalized decrease of task-evoked fMRI response across many brain regions, the interference-specific effect is a relative increase of activity localized to regions associated with the secondary task in question: left hemisphere perisylvian cortex in the case of passive listening distraction and frontal oculomotor regions in the case of saccadic distraction. Within these regions, the neural interference effects are specific to voxels that show delay-period activity on unfilled memory trials. They also predict individual differences in the magnitude of the behavioral interference effect. These results indicate that nonvisual processes supported by nonvisual brain areas contribute importantly to “visual” working memory performance.
机译:系统模型保存工作内存,以依赖于专用的,特定于域的存储缓冲区。然而,在这里,我们证明了在视觉上呈现的刺激的身份或位置的短期保留被分别在黑暗中执行的非视觉次要任务打断了-被动地分别听名词或内生扫视。这表明视觉信息的短期保留取决于多种心理规范,其中一些是非视觉的。事件相关的功能磁共振成像(fMRI)揭示了这些干扰效应的神经相关性比以前描述的更为复杂,并且在区域上更具特异性。尽管非特异性双重任务效应在许多脑区域中普遍降低了任务诱发的功能磁共振成像反应,但干扰特异性效应是相对于相关次级任务定位的区域活动的相对增加:在这种情况下,左半球腕周皮层临时性分心的情况下被动听觉分心和额叶动眼区域的变化在这些区域内,神经干扰效应特定于体素,这些体素在未填充的记忆试验中显示出延迟周期的活动。他们还预测了行为干扰效应大小的个体差异。这些结果表明,由非视觉大脑区域支持的非视觉过程对“视觉”工作记忆表现起重要作用。

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  • 来源
    《Cerebral Cortex》 |2007年第9期|2151-2162|共12页
  • 作者单位

    Department of Psychology;

    Neuroscience Training Program and Medical Scientist Training Program University of Wisconsin-Madison Madison WI 53706 USA;

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  • 正文语种 eng
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