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用于参考框架协调的海马-顶叶网络。

A Hippocampal-Parietal Network for Reference Frame Coordination.

作者信息

Zheng 征亦诚 Yicheng, Zhou 周信羽 Xinyu, Moseley Shawn C, Ragsdale Sydney M, Alday Leslie J, Wu 吴畏 Wei, Wilber Aaron A

机构信息

Department of Psychology, Program in Neuroscience, Florida State University, Tallahassee, Florida 32306.

Department of Statistics, Florida State University, Tallahassee, Florida 32306.

出版信息

J Neurosci. 2025 Apr 23;45(17):e1782242025. doi: 10.1523/JNEUROSCI.1782-24.2025.

Abstract

Navigating space and forming memories based on spatial experience are crucial for survival, including storing memories in an allocentric (map-like) framework and conversion into egocentric (body-centered) action. The hippocampus and parietal cortex (PC) comprise a network for coordinating these reference frames, though the mechanism remains unclear. We used a task requiring remembering previous spatial locations to make correct future action and observed that hippocampus can encode the allocentric place, while PC encodes upcoming actions and relays this to hippocampus. Transformation from location to action unfolds gradually, with "Came From" signals diminishing and future action representations strengthening. PC sometimes encodes previous spatial locations in a route-based reference frame and conveys this to hippocampus. The signal for the future location appears first in PC, and then in hippocampus, in the form of an egocentric direction of future goal locations, suggesting egocentric encoding recently observed in hippocampus may originate in PC (or another "upstream" structure). Bidirectional signaling is apparent between PC and hippocampus and suggests a coordinated mechanism for integrating allocentric, route-centered, and egocentric spatial reference frames at the network level during navigation.

摘要

在空间中导航并基于空间体验形成记忆对于生存至关重要,这包括将记忆存储在以自我为中心(类似地图)的框架中,并转化为以自我为中心(以身体为中心)的行动。海马体和顶叶皮质(PC)构成了一个协调这些参考框架的网络,但其机制尚不清楚。我们使用了一项需要记住先前空间位置以做出正确未来行动的任务,并观察到海马体可以编码以自我为中心的位置,而PC则编码即将到来的行动并将其传递给海马体。从位置到行动的转换逐渐展开,“来自何处”信号逐渐减弱,而未来行动表征逐渐增强。PC有时会在基于路线的参考框架中编码先前的空间位置,并将其传递给海马体。未来位置的信号首先出现在PC中,然后以未来目标位置的以自我为中心的方向的形式出现在海马体中,这表明最近在海马体中观察到的以自我为中心的编码可能起源于PC(或另一个“上游”结构)。PC和海马体之间存在明显的双向信号传递,这表明在导航过程中,在网络层面上存在一种协调机制,用于整合以自我为中心、以路线为中心和以身体为中心的空间参考框架。

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