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物体和空间位置视觉短期记忆的离散容量限制及神经解剖学关联。

Discrete capacity limits and neuroanatomical correlates of visual short-term memory for objects and spatial locations.

作者信息

Konstantinou Nikos, Constantinidou Fofi, Kanai Ryota

机构信息

Center for Applied Neuroscience, University of Cyprus, Nicosia, Cyprus.

Department of Psychology, University of Cyprus, Nicosia, Cyprus.

出版信息

Hum Brain Mapp. 2017 Feb;38(2):767-778. doi: 10.1002/hbm.23416. Epub 2016 Sep 29.

Abstract

Working memory is responsible for keeping information in mind when it is no longer in view, linking perception with higher cognitive functions. Despite such crucial role, short-term maintenance of visual information is severely limited. Research suggests that capacity limits in visual short-term memory (VSTM) are correlated with sustained activity in distinct brain areas. Here, we investigated whether variability in the structure of the brain is reflected in individual differences of behavioral capacity estimates for spatial and object VSTM. Behavioral capacity estimates were calculated separately for spatial and object information using a novel adaptive staircase procedure and were found to be unrelated, supporting domain-specific VSTM capacity limits. Voxel-based morphometry (VBM) analyses revealed dissociable neuroanatomical correlates of spatial versus object VSTM. Interindividual variability in spatial VSTM was reflected in the gray matter density of the inferior parietal lobule. In contrast, object VSTM was reflected in the gray matter density of the left insula. These dissociable findings highlight the importance of considering domain-specific estimates of VSTM capacity and point to the crucial brain regions that limit VSTM capacity for different types of visual information. Hum Brain Mapp 38:767-778, 2017. © 2016 Wiley Periodicals, Inc.

摘要

工作记忆负责在信息不再可见时将其记在心里,将感知与更高层次的认知功能联系起来。尽管有如此关键的作用,但视觉信息的短期维持却受到严重限制。研究表明,视觉短期记忆(VSTM)的容量限制与不同脑区的持续活动相关。在这里,我们研究了大脑结构的变异性是否反映在空间和客体VSTM行为能力估计的个体差异中。使用一种新颖的自适应阶梯程序分别计算空间和客体信息的行为能力估计值,发现它们互不相关,这支持了特定领域的VSTM容量限制。基于体素的形态测量(VBM)分析揭示了空间与客体VSTM可分离的神经解剖学相关性。空间VSTM的个体间变异性反映在顶下小叶的灰质密度上。相比之下,客体VSTM反映在左脑岛的灰质密度上。这些可分离的发现突出了考虑VSTM容量特定领域估计的重要性,并指出了限制不同类型视觉信息VSTM容量的关键脑区。《人类大脑图谱》38:767 - 778,2017年。© 2016威利期刊公司。

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本文引用的文献

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Processing multiple visual objects is limited by overlap in neural channels.处理多个视觉对象受到神经通道重叠的限制。
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