θ调制头向单元中与转角有关的相位进动

IF 2.4 3区 医学 Q3 NEUROSCIENCES
Hippocampus Pub Date : 2025-03-12 DOI:10.1002/hipo.70008
Zilong Ji, Eleonora Lomi, Kate Jeffery, Anna S. Mitchell, Neil Burgess
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引用次数: 0

摘要

当啮齿动物跑过它们的放电区时,网格细胞和位置细胞通常会在每个周期的θ节律中逐渐提前放电,这种现象被称为θ相位进动。在这里,我们报道了在丘脑前腹侧核(AVN)内theta调节的头部方向细胞中相对于转角的theta相位进动。当啮齿类动物转头时,这些细胞会在头部方向扫过它们偏好的调谐方向时,逐渐提前放电。相位进动的程度随着角水头速度的增加而增加。此外,在theta调制的头部方向细胞中,表现出theta跳变的相进动更为明显,并且theta跳变效应越强,相进动程度越高。这些发现与一个环吸引子模型相一致,该模型将外部θ输入与内部放电速率适应相结合,这是我们在AVN的头部方向细胞中发现的一种现象。我们的研究结果拓宽了已知的神经相位编码的信息范围,丰富了我们对支持空间定向和导航的神经动力学的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Phase Precession Relative to Turning Angle in Theta-Modulated Head Direction Cells

Phase Precession Relative to Turning Angle in Theta-Modulated Head Direction Cells

Grid and place cells typically fire at progressively earlier phases within each cycle of the theta rhythm as rodents run across their firing fields, a phenomenon known as theta phase precession. Here, we report theta phase precession relative to turning angle in theta-modulated head direction cells within the anteroventral thalamic nucleus (AVN). As rodents turn their heads, these cells fire at progressively earlier phases as head direction sweeps over their preferred tuning direction. The degree of phase precession increases with angular head velocity. Moreover, phase precession is more pronounced in those theta-modulated head direction cells that exhibit theta skipping, with a stronger theta-skipping effect correlating with a higher degree of phase precession. These findings are consistent with a ring attractor model that integrates external theta input with internal firing rate adaptation—a phenomenon we identified in head direction cells within AVN. Our results broaden the range of information known to be subject to neural phase coding and enrich our understanding of the neural dynamics supporting spatial orientation and navigation.

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来源期刊
Hippocampus
Hippocampus 医学-神经科学
CiteScore
5.80
自引率
5.70%
发文量
79
审稿时长
3-8 weeks
期刊介绍: Hippocampus provides a forum for the exchange of current information between investigators interested in the neurobiology of the hippocampal formation and related structures. While the relationships of submitted papers to the hippocampal formation will be evaluated liberally, the substance of appropriate papers should deal with the hippocampal formation per se or with the interaction between the hippocampal formation and other brain regions. The scope of Hippocampus is wide: single and multidisciplinary experimental studies from all fields of basic science, theoretical papers, papers dealing with hippocampal preparations as models for understanding the central nervous system, and clinical studies will be considered for publication. The Editor especially encourages the submission of papers that contribute to a functional understanding of the hippocampal formation.
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