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感觉皮层中的威胁记忆:嗅觉的启示。

Threat Memory in the Sensory Cortex: Insights from Olfaction.

机构信息

Department of Psychology, Florida State University, Tallahassee, FL, USA.

Department of Child & Adolescent Psychiatry, New York University School of Medicine, New York, NY, USA.

出版信息

Neuroscientist. 2024 Jun;30(3):285-293. doi: 10.1177/10738584221148994. Epub 2023 Jan 26.

Abstract

The amygdala has long held the center seat in the neural basis of threat conditioning. However, a rapidly growing literature has elucidated extra-amygdala circuits in this process, highlighting the sensory cortex for its critical role in the mnemonic aspect of the process. While this literature is largely focused on the auditory system, substantial human and rodent findings on the olfactory system have emerged. The unique nature of the olfactory neuroanatomy and its intimate association with emotion compels a review of this recent literature to illuminate its special contribution to threat memory. Here, integrating recent evidence in humans and animal models, we posit that the olfactory (piriform) cortex is a primary and necessary component of the distributed threat memory network, supporting mnemonic ensemble coding of acquired threat. We further highlight the basic circuit architecture of the piriform cortex characterized by distributed, auto-associative connections, which is prime for highly efficient content-addressable memory computing to support threat memory. Given the primordial role of the piriform cortex in cortical evolution and its simple, well-defined circuits, we propose that olfaction can be a model system for understanding (transmodal) sensory cortical mechanisms underlying threat memory.

摘要

杏仁核在威胁条件作用的神经基础中一直占据核心地位。然而,越来越多的文献阐明了这一过程中的杏仁体外回路,突出了感觉皮层在该过程的记忆方面的关键作用。尽管这一文献主要集中在听觉系统,但人类和啮齿动物在嗅觉系统方面的大量发现已经出现。嗅觉神经解剖结构的独特性质及其与情绪的密切联系,促使我们回顾这一最新文献,阐明其对威胁记忆的特殊贡献。在这里,我们整合了人类和动物模型的最新证据,提出嗅皮层(梨状皮层)是分布式威胁记忆网络的主要和必要组成部分,支持获得性威胁的记忆集合编码。我们进一步强调了梨状皮层的基本电路结构,其特征是分布式的自联想连接,这是支持威胁记忆的高效内容寻址记忆计算的理想选择。鉴于梨状皮层在皮质进化中的原始作用及其简单、明确的回路,我们提出嗅觉可以作为一个模型系统,用于理解威胁记忆的(跨模态)感觉皮层机制。

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