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6
Egocentric boundary vector tuning of the retrosplenial cortex.自我中心边界向量调整后扣带回皮层。
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7
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8
Dissociation between Postrhinal Cortex and Downstream Parahippocampal Regions in the Representation of Egocentric Boundaries.后眶回与下海马旁回在自我中心边界表征中的分离。
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9
A sense of space in postrhinal cortex.后眶皮层的空间感。
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10
Neuronal representation of environmental boundaries in egocentric coordinates.自我中心坐标中环境边界的神经元表示。
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前丘脑优先驱动后眶皮层的非自我中心而非自我中心定向调谐。

The Anterior Thalamus Preferentially Drives Allocentric But Not Egocentric Orientation Tuning in Postrhinal Cortex.

机构信息

Department of Psychological and Brain Sciences, Dartmouth College, Hanover, New Hampshire 03755.

Department of Psychological and Brain Sciences, Dartmouth College, Hanover, New Hampshire 03755

出版信息

J Neurosci. 2024 Mar 6;44(10):e0861232024. doi: 10.1523/JNEUROSCI.0861-23.2024.

DOI:10.1523/JNEUROSCI.0861-23.2024
PMID:38286624
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10919204/
Abstract

Navigating a complex world requires integration of multiple spatial reference frames, including information about one's orientation in both allocentric and egocentric coordinates. Combining these two information sources can provide additional information about one's spatial location. Previous studies have demonstrated that both egocentric and allocentric spatial signals are reflected by the firing of neurons in the rat postrhinal cortex (POR), an area that may serve as a hub for integrating allocentric head direction (HD) cell information with egocentric information from center-bearing and center-distance cells. However, we have also demonstrated that POR HD cells are uniquely influenced by the visual properties and locations of visual landmarks, bringing into question whether the POR HD signal is truly allocentric as opposed to simply being a response to visual stimuli. To investigate this issue, we recorded HD cells from the POR of female rats while bilaterally inactivating the anterior thalamus (ATN), a region critical for expression of the "classic" HD signal in cortical areas. We found that ATN inactivation led to a significant decrease in both firing rate and tuning strength for POR HD cells, as well as a disruption in the encoding of allocentric location by conjunctive HD/egocentric cells. In contrast, POR egocentric cells without HD tuning were largely unaffected in a consistent manner by ATN inactivation. These results indicate that the POR HD signal originates at least partially from projections from the ATN and supports the view that the POR acts as a hub for the integration of egocentric and allocentric spatial representations.

摘要

在复杂的世界中导航需要整合多个空间参照系,包括关于自身在以自我为中心和以环境为中心坐标中的方向的信息。结合这两个信息源可以提供有关自身空间位置的附加信息。以前的研究表明,自我中心和以环境为中心的空间信号都反映在大鼠后穹窿皮质(POR)的神经元放电中,该区域可能作为整合以环境为中心的头部方向(HD)细胞信息与以自我为中心的来自bearing 细胞和距离细胞的信息的枢纽。然而,我们还表明,POR HD 细胞受到视觉属性和视觉地标位置的独特影响,这使得 POR HD 信号是否真的是以环境为中心的而不是仅仅对视觉刺激的反应成为一个问题。为了研究这个问题,我们记录了来自雌性大鼠 POR 的 HD 细胞,同时双侧失活前丘脑(ATN),这是皮质区域中“经典”HD 信号表达的关键区域。我们发现,ATN 失活导致 POR HD 细胞的放电率和调谐强度显著降低,以及与 HD/自我中心细胞相结合的空间位置编码中断。相比之下,没有 HD 调谐的 POR 自我中心细胞在 ATN 失活时基本不受影响。这些结果表明,POR HD 信号至少部分源自 ATN 的投射,并支持 POR 充当自我中心和以环境为中心空间表示整合的枢纽的观点。