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内嗅皮层中路径整合和空间上下文表示的模型。

A model of path integration and representation of spatial context in the retrosplenial cortex.

机构信息

ETIS UMR8051, CY Cergy Paris University, ENSEA, CNRS, 95000, Cergy, France.

出版信息

Biol Cybern. 2020 Apr;114(2):303-313. doi: 10.1007/s00422-020-00833-x. Epub 2020 Apr 18.

DOI:10.1007/s00422-020-00833-x
PMID:32306125
Abstract

Inspired by recent biological experiments, we simulate animals moving in different environments (open space, spiral mazes and on a treadmill) to test the performances of a simple model of the retrosplenial cortex (RSC) acting as a path integration (PI) and as a categorization mechanism. The connection between the hippocampus, RSC and the entorhinal cortex is revealed through a novel perspective. We suppose that the path integration is performed by the information coming from RSC. Grid cells in the entorhinal cortex then can be built as the result of a modulo projection of RSC activity. In our model, PI is performed by a 1D field of neurons acting as a simple low-pass filter of head direction (HD) cells modulated by the linear velocity of the animal. Our paper focuses on the constraints on the HD cells shape for a good approximation of PI. Recording of neurons on our 1D PI field shows these neurons would not be intuitively interpreted as performing PI. Using inputs coming from a narrow neighbouring projection of our PI field creates place cell-like activities in the RSC when the mouse runs on the treadmill. This can be the result of local self-organizing maps representing blobs of neurons in the RSC (e.g. cortical columns). Other simulations show that accessing the whole PI field would induce place cells whatever the environment is. Since this property is not observed, we conclude that the categorization neurons in the RSC should have access to only a small fraction of the PI field.

摘要

受近期生物实验的启发,我们模拟了动物在不同环境(开放空间、螺旋迷宫和跑步机)中的运动,以测试作为路径整合 (PI) 和分类机制的后隔核 (RSC) 的简单模型的性能。通过新的视角揭示了海马体、RSC 和内嗅皮层之间的联系。我们假设路径整合是由来自 RSC 的信息完成的。然后,内嗅皮层中的网格细胞可以作为 RSC 活动的模投影的结果构建。在我们的模型中,PI 是由作为头部方向 (HD) 细胞调制的线性速度的简单低通滤波器的 1D 神经元场执行的。我们的论文侧重于 HD 细胞形状的约束,以实现 PI 的良好逼近。在我们的 1D PI 场中记录神经元表明,这些神经元不会被直观地解释为执行 PI。当老鼠在跑步机上运行时,使用来自我们的 PI 场的狭窄相邻投影输入会在 RSC 中产生类似于位置细胞的活动。这可能是 RSC 中神经元团块(例如皮质柱)的局部自组织图的结果。其他模拟表明,无论环境如何,访问整个 PI 场都会诱导位置细胞。由于没有观察到这种特性,我们得出结论,RSC 中的分类神经元应该只能访问 PI 场的一小部分。

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A model of path integration and representation of spatial context in the retrosplenial cortex.内嗅皮层中路径整合和空间上下文表示的模型。
Biol Cybern. 2020 Apr;114(2):303-313. doi: 10.1007/s00422-020-00833-x. Epub 2020 Apr 18.
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Distance-tuned neurons drive specialized path integration calculations in medial entorhinal cortex.距离调谐神经元驱动内侧内嗅皮层中专门的路径整合计算。
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Encoding and storage of spatial information in the retrosplenial cortex.后隔区的空间信息编码和存储。
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Gated transformations from egocentric to allocentric reference frames involving retrosplenial cortex, entorhinal cortex, and hippocampus.涉及后扣带回皮质、内嗅皮质和海马体的从自我中心到他心参照系的门控转换。
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引用本文的文献

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Cell-type-specific cholinergic control of granular retrosplenial cortex with implications for angular velocity coding across brain states.颗粒状 retrosplenial 皮质的细胞类型特异性胆碱能控制及其对跨脑状态角速度编码的影响。
Prog Neurobiol. 2025 Jul 8;251:102804. doi: 10.1016/j.pneurobio.2025.102804.
2
Cell-type-specific cholinergic control of granular retrosplenial cortex with implications for angular velocity coding across brain states.颗粒状 retrosplenial 皮质的细胞类型特异性胆碱能控制及其对跨脑状态角速度编码的影响。
bioRxiv. 2024 Jun 6:2024.06.04.597341. doi: 10.1101/2024.06.04.597341.
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LPMP: A Bio-Inspired Model for Visual Localization in Challenging Environments.
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Biol Cybern. 2020 Apr;114(2):139-167. doi: 10.1007/s00422-020-00829-7. Epub 2020 Apr 13.