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自我意识影响人类内嗅皮层的空间导航和六向编码。

Sense of self impacts spatial navigation and hexadirectional coding in human entorhinal cortex.

机构信息

Center of Neuroprosthetics, Faculty of Life Sciences, Swiss Federal Institute of Technology (École Polytechnique Fédérale de Lausanne, EPFL), Geneva, Switzerland.

Brain Mind Institute, Faculty of Life Sciences, Swiss Federal Institute of Technology (École Polytechnique Fédérale de Lausanne, EPFL), Lausanne, Switzerland.

出版信息

Commun Biol. 2022 May 2;5(1):406. doi: 10.1038/s42003-022-03361-5.

Abstract

Grid cells in entorhinal cortex (EC) encode an individual's location in space and rely on environmental cues and self-motion cues derived from the individual's body. Body-derived signals are also primary signals for the sense of self and based on integrated sensorimotor signals (proprioceptive, tactile, visual, motor) that have been shown to enhance self-centered processing. However, it is currently unknown whether such sensorimotor signals that modulate self-centered processing impact grid cells and spatial navigation. Integrating the online manipulation of bodily signals, to modulate self-centered processing, with a spatial navigation task and an fMRI measure to detect grid cell-like representation (GCLR) in humans, we report improved performance in spatial navigation and decreased GCLR in EC. This decrease in entorhinal GCLR was associated with an increase in retrosplenial cortex activity, which was correlated with participants' navigation performance. These data link self-centered processes during spatial navigation to entorhinal and retrosplenial activity and highlight the role of different bodily factors at play when navigating in VR.

摘要

网格细胞存在于内嗅皮层(entorhinal cortex,EC)中,能对个体在空间中的位置进行编码,而这种位置信息的获取依赖于个体所处环境中的提示线索以及个体自身运动所产生的运动线索。个体自身产生的运动信号也是自我感知的主要信号来源,这些信号是基于整合的感觉运动信号(本体感觉、触觉、视觉和运动觉),而这些整合的感觉运动信号已被证实能够增强以自我为中心的加工过程。然而,目前尚不清楚调节以自我为中心的加工过程的这种感觉运动信号是否会影响网格细胞和空间导航。本研究将对身体信号的在线操作(用于调节以自我为中心的加工过程)与空间导航任务和 fMRI 测量(用于检测人类中的网格细胞样表示(grid cell-like representation,GCLR))相结合,报告了在空间导航中提高的表现和内嗅皮层中 GCLR 的减少。这种内嗅皮层 GCLR 的减少与后扣带回皮层活动的增加有关,而后扣带回皮层活动与参与者的导航表现相关。这些数据将空间导航过程中的以自我为中心的过程与内嗅皮层和后扣带回皮层的活动联系起来,并强调了在 VR 中导航时不同身体因素发挥作用的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b00/9061856/a1dd898096cb/42003_2022_3361_Fig1_HTML.jpg

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