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老化的导航系统。

The Aging Navigational System.

作者信息

Lester Adam W, Moffat Scott D, Wiener Jan M, Barnes Carol A, Wolbers Thomas

机构信息

Evelyn F. McKnight Brain Institute, University of Arizona, Tucson, AZ 85721, USA; Division of Neural Systems, Memory and Aging, University of Arizona, Tucson, AZ 85721, USA.

School of Psychology, Georgia Institute of Technology, Atlanta, GA 30332 USA.

出版信息

Neuron. 2017 Aug 30;95(5):1019-1035. doi: 10.1016/j.neuron.2017.06.037.

Abstract

The discovery of neuronal systems dedicated to computing spatial information, composed of functionally distinct cell types such as place and grid cells, combined with an extensive body of human-based behavioral and neuroimaging research has provided us with a detailed understanding of the brain's navigation circuit. In this review, we discuss emerging evidence from rodents, non-human primates, and humans that demonstrates how cognitive aging affects the navigational computations supported by these systems. Critically, we show 1) that navigational deficits cannot solely be explained by general deficits in learning and memory, 2) that there is no uniform decline across different navigational computations, and 3) that navigational deficits might be sensitive markers for impending pathological decline. Following an introduction to the mechanisms underlying spatial navigation and how they relate to general processes of learning and memory, the review discusses how aging affects the perception and integration of spatial information, the creation and storage of memory traces for spatial information, and the use of spatial information during navigational behavior. The closing section highlights the clinical potential of behavioral and neural markers of spatial navigation, with a particular emphasis on neurodegenerative disorders.

摘要

致力于计算空间信息的神经元系统的发现,该系统由功能不同的细胞类型(如位置细胞和网格细胞)组成,再加上大量基于人类的行为和神经成像研究,使我们对大脑的导航回路有了详细的了解。在这篇综述中,我们讨论了来自啮齿动物、非人灵长类动物和人类的新证据,这些证据表明认知衰老如何影响这些系统所支持的导航计算。至关重要的是,我们表明:1)导航缺陷不能仅仅用学习和记忆的一般缺陷来解释;2)不同的导航计算不存在统一的衰退;3)导航缺陷可能是即将出现的病理衰退的敏感指标。在介绍了空间导航的潜在机制以及它们与学习和记忆的一般过程的关系之后,本综述讨论了衰老如何影响空间信息的感知和整合、空间信息记忆痕迹的创建和存储,以及导航行为中空间信息的使用。结尾部分强调了空间导航行为和神经标记物的临床潜力,特别关注神经退行性疾病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/404b/5659315/a2091cf98a07/nihms887986f1.jpg

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