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首页> 外文期刊>Cerebral cortex >Gray Matter Volume in Different Cortical Structures Dissociably Relates to Individual Differences in Capacity and Precision of Visual Working Memory
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Gray Matter Volume in Different Cortical Structures Dissociably Relates to Individual Differences in Capacity and Precision of Visual Working Memory

机译:不同皮质结构中的灰质体积可拆卸地涉及可视化工作记忆的容量和精度的个体差异

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摘要

Visual working memory (VWM) refers to our ability to selectively maintain visual information in a mental representation. While cognitive limits of VWM greatly influence a variety of mental operations, it remains controversial whether the quantity or quality of representations in mind constrains VWM. Here, we examined behavior-to-brain anatomical relations as well as brain activity to brain anatomy associations with a "neural" marker specific to the retention interval of VWM. Our results consistently indicated that individuals who maintained a larger number of items in VWM tended to have a larger gray matter (GM) volume in their left lateral occipital region. In contrast, individuals with a superior ability to retain with high precision tended to have a larger GM volume in their right parietal lobe. These results indicate that individual differences in quantity and quality of VWM may be associated with regional GM volumes in a dissociable manner, indicating willful integration of information in VWM may recruit separable cortical subsystems.
机译:视觉工作记忆(VWM)是指我们在心理表征中有选择地维持视觉信息的能力。虽然VWM的认知局限性极大地影响了各种心理操作,但心理表征的数量或质量是否会限制VWM仍存在争议。在这里,我们研究了行为与大脑解剖结构的关系,以及大脑活动与大脑解剖结构之间的关联,以及特定于VWM保留时间间隔的“神经”标记。我们的结果一致表明,在VWM中保留较多项目的个体,其左侧枕外侧区的灰质(GM)体积往往较大。相比之下,具有高精度记忆能力的个体,其右顶叶的GM体积往往更大。这些结果表明,VWM数量和质量的个体差异可能与区域GM体积以分离的方式相关,表明VWM中有意整合的信息可能招募可分离的皮质子系统。

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