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灵长类顶叶和前额皮质中空集的工作记忆表示。

Working memory representation of empty sets in the primate parietal and prefrontal cortices.

机构信息

Animal Physiology, Institute of Neurobiology, University Tübingen, Germany.

Animal Physiology, Institute of Neurobiology, University Tübingen, Germany.

出版信息

Cortex. 2019 May;114:102-114. doi: 10.1016/j.cortex.2019.02.028. Epub 2019 Mar 19.

Abstract

For the brain, representing empty sets as a precursor to zero is a challenge because it requires the active coding of a quantitative category that, by definition, contains no items. Recent neurophysiological recordings show that empty sets are distinctively encoded by neurons in the primate ventral intraparietal area (VIP) and the prefrontal cortex (PFC). However, how empty sets are represented in working memory is unknown. We simultaneously recorded from VIP and PFC while rhesus monkeys performed a delayed numerosity matching task that required the maintenance of numerosities in memory for a brief period. Countable numerosities (1-4) and empty sets ('numerosity 0') were included as stimuli. Single neurons in PFC, and to a lesser extent neurons in VIP, actively encoded empty sets during the delay period. In both cortical areas, empty sets were progressively differentiated from countable numerosities with time during the ongoing trial. Moreover, the tuning of neuron populations in VIP and PFC shifted dynamically towards empty sets so that they became increasingly overrepresented in working memory. Compared to VIP, the prefrontal representation of empty sets was more stable in time and more independent of low level visual features. Moreover, PFC activity correlated better with behavioral performance in empty set trials. These findings suggest that the representation of null quantity in working memory relies more on prefrontal and less on parietal processing. Overall, our results show that empty sets are dynamically and distinctly represented in working memory.

摘要

对于大脑来说,将空集表示为零的前置条件是一个挑战,因为这需要主动对一个定量类别进行编码,而根据定义,这个类别不包含任何项目。最近的神经生理学记录表明,空集是由灵长类动物腹侧顶内区(VIP)和前额叶皮层(PFC)中的神经元进行独特编码的。然而,工作记忆中如何表示空集尚不清楚。我们在恒河猴执行延迟数量匹配任务时同时记录了 VIP 和 PFC 的神经活动,该任务要求在短时间内将数量保存在记忆中。可数数量(1-4)和空集(“数量 0”)被用作刺激。PFC 中的单个神经元,以及程度较小的 VIP 中的神经元,在延迟期间积极编码空集。在这两个皮层区域中,随着时间的推移,空集在正在进行的试验中逐渐与可数数量区分开来。此外,VIP 和 PFC 中的神经元群体的调谐动态地向空集转移,使得它们在工作记忆中越来越被过度表示。与 VIP 相比,前额叶对空集的表示在时间上更稳定,并且与低水平视觉特征的依赖性更小。此外,PFC 活动与空集试验中的行为表现相关性更好。这些发现表明,工作记忆中对零数量的表示更多地依赖于前额叶,而较少依赖于顶叶处理。总体而言,我们的结果表明,空集在工作记忆中是动态且独特地表示的。

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