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衰老与空间导航:我们了解什么,又将去往何方?

Aging and spatial navigation: what do we know and where do we go?

机构信息

Institute of Gerontology, Wayne State University, 87 E. Ferry Street, Detroit, MI 48202, USA.

出版信息

Neuropsychol Rev. 2009 Dec;19(4):478-89. doi: 10.1007/s11065-009-9120-3. Epub 2009 Nov 20.

Abstract

Spatial navigation is a complex cognitive skill that is necessary for everyday functioning in the environment. However, navigational skills are not typically measured in most test batteries assessing cognitive aging. The present paper reviews what we know about behavioral differences between older and younger adults in navigational skill and reviews the putative neural mechanisms that may underlie these behavioral differences. Empirical studies to date clearly identify navigation as an aspect of cognitive function that is vulnerable to the aging process. The few functional and structural neuroimaging studies that speak to neurological correlates of these age-related differences point to the hippocampus, parahippocampal gyrus, posterior cingulate gyrus (retrosplenial cortex), parietal lobes and pre-frontal cortex as structures critically involved in age effects on navigation. Outstanding issues in the field are addressed and productive avenues of future research are suggested. Among these outstanding issues include the necessity of performing longitudinal studies and differentiating between hippocampal and extra-hippocampal contributions to aging in navigation. The field may also be advanced by empirical assessment of navigational strategies and investigations into the multisensory nature of navigation including assessing the relative contributions of visual, vestibular, and proprioceptive function to age differences in navigational skill.

摘要

空间导航是一种复杂的认知技能,对于在环境中进行日常活动是必要的。然而,在评估认知老化的大多数测试组合中,通常不会测量导航技能。本文综述了关于老年人和年轻人在导航技能方面的行为差异的知识,并综述了可能是这些行为差异基础的潜在神经机制。迄今为止的实证研究清楚地表明,导航是认知功能中容易受到衰老过程影响的一个方面。为数不多的针对这些与年龄相关差异的神经影像学研究指出,海马体、海马旁回、后扣带回(后顶叶皮层)、顶叶和前额叶是与导航中年龄相关影响密切相关的结构。本文还讨论了该领域的悬而未决的问题,并提出了有前景的未来研究方向。这些悬而未决的问题包括进行纵向研究和区分海马和海马外结构对导航中衰老的贡献的必要性。通过对导航策略的实证评估以及对导航的多感觉性质的研究,包括评估视觉、前庭和本体感觉功能对导航技能年龄差异的相对贡献,该领域也可能得到推进。

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