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猕猴前额叶皮层视觉工作记忆的神经机制

Neural mechanisms of visual working memory in prefrontal cortex of the macaque.

作者信息

Miller E K, Erickson C A, Desimone R

机构信息

Laboratory of Neuropsychology, National Institute of Mental Health, Bethesda, Maryland 20892-4415, USA.

出版信息

J Neurosci. 1996 Aug 15;16(16):5154-67. doi: 10.1523/JNEUROSCI.16-16-05154.1996.

Abstract

Prefrontal (PF) cells were studied in monkeys performing a delayed matching to sample task, which requires working memory. The stimuli were complex visual patterns and to solve the task, the monkeys had to discriminate among the stimuli, maintain a memory of the sample stimulus during the delay periods, and evaluate whether a test stimulus matched the sample presented earlier in the trial. PF cells have properties consistent with a role in all three of these operations. Approximately 25% of the cells responded selectively to different visual stimuli. Half of the cells showed heightened activity during the delay after the sample and, for many of these cells, the magnitude of delay activity was selective for different samples. Finally, more than half of the cells responded differently to the test stimuli depending on whether they matched the sample. Because inferior temporal (IT) cortex also is important for working memory, we compared PF cells with IT cells studied in the same task. Compared with IT cortex, PF responses were less often stimulus-selective but conveyed more information about whether a given test stimulus was a match to the sample. Furthermore, sample-selective delay activity in PF cortex was maintained throughout the trial even when other test stimuli intervened during the delay, whereas delay activity in IT cortex was disrupted by intervening stimuli. The results suggest that PF cortex plays a primary role in working memory tasks and may be a source of feedback inputs to IT cortex, biasing activity in favor of behaviorally relevant stimuli.

摘要

在执行需要工作记忆的延迟匹配样本任务的猴子身上研究了前额叶(PF)细胞。刺激物是复杂的视觉模式,为了解决该任务,猴子必须区分这些刺激物,在延迟期保持对样本刺激的记忆,并评估测试刺激是否与试验中较早呈现的样本匹配。PF细胞具有与这三种操作中的作用一致的特性。大约25%的细胞对不同的视觉刺激有选择性反应。一半的细胞在样本后的延迟期间表现出增强的活动,并且对于许多这些细胞,延迟活动的幅度对不同的样本具有选择性。最后,超过一半的细胞对测试刺激的反应因它们是否与样本匹配而不同。由于颞下(IT)皮质对工作记忆也很重要,我们将PF细胞与在同一任务中研究的IT细胞进行了比较。与IT皮质相比,PF反应较少具有刺激选择性,但传达了更多关于给定测试刺激是否与样本匹配的信息。此外,即使在延迟期间有其他测试刺激介入,PF皮质中的样本选择性延迟活动在整个试验过程中都得以维持,而IT皮质中的延迟活动则被介入刺激所破坏。结果表明,PF皮质在工作记忆任务中起主要作用,并且可能是向IT皮质提供反馈输入的来源,使活动偏向于行为相关的刺激。

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