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Differential contributions of dorsolateral and frontopolar cortices to working memory processes in the primate

机译:背外侧和额极皮层对灵长类动物工作记忆过程的不同贡献

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摘要

The ability to maintain and manipulate information across temporal delays is a fundamental requirement to bridge the gap between perception and action. In the case of higher-order behavior, the maintenance of rules and strategies is particularly helpful in bridging this gap. The prefrontal cortex (PFC) has long been considered critical for such processes, and research has focused on different subdivisions of PFC to gain an insight into their diverse contributions to these mechanisms. Substantial evidence indicates that dorsolateral PFC (dlPFC) is an important structure for maintaining information across delays, with cells actively firing across delays and lesions to this region causing deficits in tasks involving delayed responses and maintenance of rules online. Frontopolar cortex (FP), on the other hand, appears to show the opposite pattern of results, with cells not firing across delays and lesions to this region not affecting the same rule-based, delayed response tasks that are impaired following dlPFC lesions. The body of evidence therefore suggests that dlPFC and FP’s contributions to working memory differ. In this article, we will provide a perspective on how these regions might implement distinct but complementary and interactive functions that contribute to more general temporally-extended processes and support flexible, dynamic behavior.
机译:跨时间延迟保持和操纵信息的能力是弥合感知与行动之间差距的基本要求。在高阶行为的情况下,规则和策略的维护对于弥合这一差距特别有帮助。长期以来,人们一直认为前额叶皮层(PFC)对于此类过程至关重要,并且研究集中在PFC的不同细分领域,以了解它们对这些机制的各种贡献。大量证据表明,背外侧PFC(dlPFC)是在延误中维持信息的重要结构,细胞主动跨越延误发射,并且对该区域的损害导致任务缺陷,包括延迟响应和在线规则维护。另一方面,额极皮层(FP)似乎显示出相反的结果,细胞没有跨延迟发射,并且该区域的损伤不影响dlPFC损伤后受损的基于规则的延迟反应任务。因此,大量证据表明dlPFC和FP对工作记忆的贡献不同。在本文中,我们将提供一个视角,说明这些区域如何实现独特但互补的交互功能,这些功能有助于更普遍的时间扩展过程并支持灵活的动态行为。

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