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前额叶皮层中的凸起吸引子动力学解释了空间工作记忆行为的精确性。

Bump attractor dynamics in prefrontal cortex explains behavioral precision in spatial working memory.

机构信息

Institut d'Investigacions Biomèdiques August Pi i Sunyer, Barcelona, Spain.

1] Institut d'Investigacions Biomèdiques August Pi i Sunyer, Barcelona, Spain. [2] School of Mathematics, University of Minnesota, Minneapolis, Minnesota, USA.

出版信息

Nat Neurosci. 2014 Mar;17(3):431-9. doi: 10.1038/nn.3645. Epub 2014 Feb 2.

Abstract

Prefrontal persistent activity during the delay of spatial working memory tasks is thought to maintain spatial location in memory. A 'bump attractor' computational model can account for this physiology and its relationship to behavior. However, direct experimental evidence linking parameters of prefrontal firing to the memory report in individual trials is lacking, and, to date, no demonstration exists that bump attractor dynamics underlies spatial working memory. We analyzed monkey data and found model-derived predictive relationships between the variability of prefrontal activity in the delay and the fine details of recalled spatial location, as evident in trial-to-trial imprecise oculomotor responses. Our results support a diffusing bump representation for spatial working memory instantiated in persistent prefrontal activity. These findings reinforce persistent activity as a basis for spatial working memory, provide evidence for a continuous prefrontal representation of memorized space and offer experimental support for bump attractor dynamics mediating cognitive tasks in the cortex.

摘要

前额叶在延迟空间工作记忆任务期间的持续活动被认为是在记忆中维持空间位置。“驼峰吸引子”计算模型可以解释这种生理学及其与行为的关系。然而,直接的实验证据将前额叶放电参数与个体试验中的记忆报告联系起来的证据尚缺乏,而且迄今为止,没有证据表明驼峰吸引子动力学是空间工作记忆的基础。我们分析了猴子的数据,并发现模型推导的预测关系,即延迟期间前额叶活动的可变性与回忆的空间位置的细节之间的关系,这在试验间不精确的眼球运动反应中显而易见。我们的结果支持了在持续前额叶活动中体现的空间工作记忆的扩散驼峰表示。这些发现加强了持续活动作为空间工作记忆的基础,为记忆空间的连续前额叶表示提供了证据,并为皮层中驼峰吸引子动力学介导认知任务提供了实验支持。

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