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多尺度化学遗传学解析灵长类动物前额叶-颞叶自上而下调节对物体记忆的作用

Multiscale chemogenetic dissection of fronto-temporal top-down regulation for object memory in primates.

机构信息

Advanced Neuroimaging Center, National Institutes for Quantum Science and Technology, Chiba, 263-8555, Japan.

Center for the Evolutionary Origins of Human Behavior, Kyoto University, Inuyama, Aichi, 484-8506, Japan.

出版信息

Nat Commun. 2024 Jul 10;15(1):5369. doi: 10.1038/s41467-024-49570-w.

Abstract

Visual object memory is a fundamental element of various cognitive abilities, and the underlying neural mechanisms have been extensively examined especially in the anterior temporal cortex of primates. However, both macroscopic large-scale functional network in which this region is embedded and microscopic neuron-level dynamics of top-down regulation it receives for object memory remains elusive. Here, we identified the orbitofrontal node as a critical partner of the anterior temporal node for object memory by combining whole-brain functional imaging during rest and a short-term object memory task in male macaques. Focal chemogenetic silencing of the identified orbitofrontal node downregulated both the local orbitofrontal and remote anterior temporal nodes during the task, in association with deteriorated mnemonic, but not perceptual, performance. Furthermore, imaging-guided neuronal recordings in the same monkeys during the same task causally revealed that orbitofrontal top-down modulation enhanced stimulus-selective mnemonic signal in individual anterior temporal neurons while leaving bottom-up perceptual signal unchanged. Furthermore, similar activity difference was also observed between correct and mnemonic error trials before silencing, suggesting its behavioral relevance. These multifaceted but convergent results provide a multiscale causal understanding of dynamic top-down regulation of the anterior temporal cortex along the ventral fronto-temporal network underpinning short-term object memory in primates.

摘要

视觉物体记忆是各种认知能力的基本要素,其潜在的神经机制已在灵长类动物的前颞叶皮层得到广泛研究。然而,该区域所嵌入的宏观大规模功能网络以及它接收的用于物体记忆的自上而下调控的微观神经元级别的动态仍然难以捉摸。在这里,我们通过在雄性猕猴的静息状态和短期物体记忆任务期间进行全脑功能成像,将眶额节点确定为前颞节点进行物体记忆的关键伙伴。在任务期间,鉴定的眶额节点的局部化学遗传沉默下调了任务期间的局部眶额和远程前颞节点,与记忆性能恶化相关,但与感知性能无关。此外,在同一任务中,对同一批猴子进行的成像引导神经元记录在因果上揭示了眶额自上而下的调节增强了单个前颞神经元中对刺激的选择性记忆信号,而不改变自上而下的感知信号。此外,在沉默之前的正确和记忆错误试验之间也观察到类似的活动差异,表明其具有行为相关性。这些多方面但收敛的结果提供了灵长类动物短期物体记忆沿腹侧额颞网络的前颞叶皮层的动态自上而下调节的多尺度因果理解。

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