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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Hemispheric asymmetry in visuotopic posterior parietal cortex emerges with visual short-term memory load.
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Hemispheric asymmetry in visuotopic posterior parietal cortex emerges with visual short-term memory load.

机译:VisuoTopic后部皮质中的半球不对称随着视觉短期内存负荷出现。

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摘要

Visual short-term memory (VSTM) briefly maintains a limited sampling from the visual world. Activity in the intraparietal sulcus (IPS) tightly correlates with the number of items stored in VSTM. This activity may occur in or near to multiple distinct visuotopically mapped cortical areas that have been identified in IPS. To understand the topographic and spatial properties of VSTM, we investigated VSTM activity in visuotopic IPS regions using functional magnetic resonance imaging. VSTM drove areas IPS0-2, but largely spared IPS3-4. Under visual stimulation, these areas in both hemispheres code the contralateral visual hemifield. In contrast to the hemispheric symmetry observed with visual stimulation, an asymmetry emerged during VSTM with increasing memory load. The left hemisphere exhibited load-dependent activity only for contralateral memory items; right hemisphere activity reflected VSTM load regardless of visual-field location. Our findings demonstrate that VSTM induces a switch in spatial representation in right hemisphere IPS from contralateral to full-field coding. The load dependence of right hemisphere effects argues that memory-dependent and/or attention-dependent processes drive this change in spatial processing. This offers a novel means for investigating spatial-processing impairments in hemispatial neglect.
机译:视觉短期内存(VSTM)简要维护视觉世界的有限的抽样。心肺部(IPS)中的活性与VSTM中存储的物品数密切相关。该活动可能在IP中鉴定的多个不同的潜在覆盖皮质区域或近的多个不同的visuotopical映射的皮质区域。要了解VSTM的地形和空间特性,我们使用功能磁共振成像研究了visuotopic IPS区域的VSTM活动。 VSTM驱动区域IPS0-2,但很大程度上备受了IPS3-4。在视觉刺激下,两个区域中的这些区域代码对侧视觉血淋力。与用视觉刺激观察到的半球对称性相反,VSTM中出现的不对称性,随着内存负荷增加。左半球仅向对侧存储器物品表现出负载依赖活动;右半球活动反映了VSTM负载,无论视野位置如何。我们的研究结果表明,VSTM在右半球IP中的空间表示中的开关从对侧到全场编码。右半球效应的负载依赖性认为,内存相关和/或注意力的过程驱动了空间处理的这种变化。这提供了一种研究半缺失忽视中的空间处理损伤的新颖手段。

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