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通过用蝇蕈醇进行局部失活研究猴子视觉空间工作记忆的前额叶皮层表征。

Prefrontal cortical representation of visuospatial working memory in monkeys examined by local inactivation with muscimol.

作者信息

Sawaguchi T, Iba M

机构信息

Laboratory of Neurobiology, Hokkaido University School of Medicine, Sapporo 060-8638, Japan.

出版信息

J Neurophysiol. 2001 Oct;86(4):2041-53. doi: 10.1152/jn.2001.86.4.2041.

Abstract

In primates, dorsolateral areas of the prefrontal cortex (PFC) play a major role in visuospatial working memory. To examine the functional organization of the PFC for representing visuospatial working memory, we produced reversible local inactivation, with the local injection of muscimol (5 microg, 1 microl), at various sites (n = 100) in the dorsolateral PFC of monkeys and observed the behavioral consequences in an oculomotor delayed-response task that required memory-guided saccades for locations throughout both visual fields. At 82 sites, the local injection of muscimol induced deficits in memory-guided saccades to a few specific, usually contralateral, target locations that varied with the location of the injection site. Such deficits depended on the delay length, and longer delays were associated with larger deficits in memory-guided saccades. The injection sites and affected spatial locations of the target showed a gross topographical relationship. No deficits appeared for a control task in which the subject was required to make a visually guided saccade to a visible target. These findings suggest that a specific site in the dorsolateral PFC is responsible for the working memory process for a specific visuospatial coordinate to guide goal-directed behavior. Further, memoranda for specific visuospatial coordinates appear to be represented in a topographical memory map within the dorsolateral PFC to represent visuospatial working memory processes.

摘要

在灵长类动物中,前额叶皮质(PFC)的背外侧区域在视觉空间工作记忆中起主要作用。为了研究PFC在表征视觉空间工作记忆方面的功能组织,我们通过在猴子背外侧PFC的不同部位(n = 100)局部注射蝇蕈醇(5微克,1微升)产生可逆性局部失活,并在一项动眼延迟反应任务中观察行为后果,该任务要求对整个视野中的位置进行记忆引导的扫视。在82个部位,局部注射蝇蕈醇会导致对一些特定的、通常是对侧的目标位置的记忆引导扫视出现缺陷,这些目标位置会随着注射部位的不同而变化。这种缺陷取决于延迟时间的长短,延迟时间越长,记忆引导扫视的缺陷就越大。注射部位与受影响的目标空间位置呈现出大致的拓扑关系。对于要求受试者对可见目标进行视觉引导扫视的对照任务,未出现缺陷。这些发现表明,背外侧PFC中的特定部位负责特定视觉空间坐标的工作记忆过程,以指导目标导向行为。此外,特定视觉空间坐标的记忆似乎在背外侧PFC内的拓扑记忆图谱中得到表征,以呈现视觉空间工作记忆过程。

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