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神经测量揭示了在控制工作记忆访问方面的个体差异。

Neural measures reveal individual differences in controlling access to working memory.

作者信息

Vogel Edward K, McCollough Andrew W, Machizawa Maro G

机构信息

Department of Psychology, University of Oregon, Eugene, Oregon 97403-1227, USA.

出版信息

Nature. 2005 Nov 24;438(7067):500-3. doi: 10.1038/nature04171.

Abstract

The capacity of visual short-term memory is highly limited, maintaining only three to four objects simultaneously. This extreme limitation necessitates efficient mechanisms to select only the most relevant objects from the immediate environment to be represented in memory and to restrict irrelevant items from consuming capacity. Here we report a neurophysiological measure of this memory selection mechanism in humans that gauges an individual's efficiency at excluding irrelevant items from being stored in memory. By examining the moment-by-moment contents of visual memory, we observe that selection efficiency varies substantially across individuals and is strongly predicted by the particular memory capacity of each person. Specifically, high capacity individuals are much more efficient at representing only the relevant items than are low capacity individuals, who inefficiently encode and maintain information about the irrelevant items present in the display. These results provide evidence that under many circumstances low capacity individuals may actually store more information in memory than high capacity individuals. Indeed, this ancillary allocation of memory capacity to irrelevant objects may be a primary source of putative differences in overall storage capacity.

摘要

视觉短期记忆的容量极为有限,只能同时维持三到四个物体。这种极端的局限性需要高效的机制,以便仅从当前环境中选择最相关的物体在记忆中进行表征,并限制无关项目消耗容量。在此,我们报告一种针对人类这种记忆选择机制的神经生理学测量方法,该方法可评估个体在排除无关项目存储于记忆方面的效率。通过检查视觉记忆的即时内容,我们观察到选择效率在个体间存在很大差异,并且由每个人特定的记忆容量强烈预测。具体而言,高容量个体在仅表征相关项目方面比低容量个体高效得多,低容量个体对显示中存在的无关项目进行低效编码和维持。这些结果提供了证据,表明在许多情况下,低容量个体实际上可能比高容量个体在记忆中存储更多信息。确实,这种将记忆容量辅助分配给无关物体的情况可能是总体存储容量假定差异的主要来源。

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