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视觉工作记忆容量与内侧颞叶。

Visual working memory capacity and the medial temporal lobe.

机构信息

Departments of Psychology, Psychiatry, and Neurosciences, University of California, San Diego, California 92093, USA.

出版信息

J Neurosci. 2012 Mar 7;32(10):3584-9. doi: 10.1523/JNEUROSCI.6444-11.2012.

Abstract

Patients with medial temporal lobe (MTL) damage are sometimes impaired at remembering visual information across delays as short as a few seconds. Such impairments could reflect either impaired visual working memory capacity or impaired long-term memory (because attention has been diverted or because working memory capacity has been exceeded). Using a standard change-detection task, we asked whether visual working memory capacity is intact or impaired after MTL damage. Five patients with hippocampal lesions and one patient with large MTL lesions saw an array of 1, 2, 3, 4, or 6 colored squares, followed after 3, 4, or 8 s by a second array where one of the colored squares was cued. The task was to decide whether the cued square had the same color as the corresponding square in the first array or a different color. At the 1 s delay typically used to assess working memory capacity, patients performed as well as controls at all array sizes. At the longer delays, patients performed as well as controls at small array sizes, thought to be within the capacity limit, and worse than controls at large array sizes, thought to exceed the capacity limit. The findings suggest that visual working memory capacity in humans is intact after damage to the MTL structures and that damage to these structures impairs performance only when visual working memory is insufficient to support performance.

摘要

内侧颞叶(MTL)损伤的患者在几秒钟的短时间内记住视觉信息的能力有时会受到损害。这种损伤可能反映了视觉工作记忆容量受损或长期记忆受损(因为注意力被转移或因为工作记忆容量已经超过)。使用标准的变化检测任务,我们询问了 MTL 损伤后视觉工作记忆容量是否完整或受损。五名海马损伤患者和一名大 MTL 损伤患者看到了一组 1、2、3、4 或 6 个彩色方块,3 或 4 或 8 秒后,第二组方块中会有一个彩色方块被提示。任务是判断提示的方块与第一组中对应的方块颜色相同还是不同。在通常用于评估工作记忆容量的 1 秒延迟中,患者在所有数组大小上的表现都与对照组一样好。在较长的延迟中,患者在小数组大小上的表现与对照组一样好,被认为在容量限制内,而在大数组大小上的表现则不如对照组,被认为超过了容量限制。研究结果表明,人类的视觉工作记忆容量在 MTL 结构损伤后仍然完整,并且只有当视觉工作记忆不足以支持表现时,这些结构的损伤才会影响表现。

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