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长期巩固真实环境后,海马体和后内嗅皮层的目标距离编码。

Hippocampal and Retrosplenial Goal Distance Coding After Long-term Consolidation of a Real-World Environment.

机构信息

Institute of Behavioural Neuroscience, University College London, London, UK.

School of Psychology, University of Kent, Canterbury, UK.

出版信息

Cereb Cortex. 2019 Jun 1;29(6):2748-2758. doi: 10.1093/cercor/bhz044.

Abstract

Recent research indicates the hippocampus may code the distance to the goal during navigation of newly learned environments. It is unclear however, whether this also pertains to highly familiar environments where extensive systems-level consolidation is thought to have transformed mnemonic representations. Here we recorded fMRI while University College London and Imperial College London students navigated virtual simulations of their own familiar campus (>2 years of exposure) and the other campus learned days before scanning. Posterior hippocampal activity tracked the distance to the goal in the newly learned campus, as well as in familiar environments when the future route contained many turns. By contrast retrosplenial cortex only tracked the distance to the goal in the familiar campus. All of these responses were abolished when participants were guided to their goal by external cues. These results open new avenues of research on navigation and consolidation of spatial information and underscore the notion that the hippocampus continues to play a role in navigation when detailed processing of the environment is needed for navigation.

摘要

最近的研究表明,海马体在新环境导航过程中可能对目标距离进行编码。然而,在高度熟悉的环境中,是否也存在这种情况尚不清楚,因为在这些环境中,广泛的系统水平巩固已经改变了记忆表征。在这里,我们记录了伦敦大学学院和伦敦帝国理工学院学生在虚拟模拟自己熟悉的校园(>2 年的暴露)和前几天学习的另一个校园时的 fMRI。当未来的路线包含许多转弯时,后海马体活动在新学习的校园以及熟悉的环境中跟踪目标的距离。相比之下,后扣带回皮层仅在熟悉的校园中跟踪目标的距离。当参与者通过外部线索引导到目标时,所有这些反应都被消除了。这些结果为导航和空间信息巩固的研究开辟了新的途径,并强调了这样一种观点,即当需要对环境进行详细处理以进行导航时,海马体在导航中仍继续发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3112/6519689/78f78cd908f0/bhz044f01.jpg

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