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衰老和 KIBRA/WWC1 基因型会影响虚拟导航任务中的空间记忆过程。

Aging and KIBRA/WWC1 genotype affect spatial memory processes in a virtual navigation task.

机构信息

Max Planck Institute for Human Development, Center for Lifespan Psychology, 14195 Berlin, Germany; Department of Psychology, Humboldt-Universität zu Berlin, 10099 Berlin, Germany.

出版信息

Hippocampus. 2013 Oct;23(10):919-30. doi: 10.1002/hipo.22148. Epub 2013 Jun 26.

Abstract

Spatial navigation relies on multiple mnemonic mechanisms and previous work in younger adults has described two separate types of spatial memory. One type uses directional as well as boundary-related information for spatial memory and mainly implicates the hippocampal formation. The other type has been linked to directional and landmark-related information and primarily involves the striatum. Using a virtual reality navigation paradigm, we studied the impacts of aging and a single nucleotide polymorphism (SNP rs17070145) of the KIBRA gene (official name: WWC1) on these memory forms. Our data showed that older adult's spatial learning was preferentially related to processing of landmark information, whereas processing of boundary information played a more prominent role in younger adults. Moreover, among older adults T-allele carriers of the examined KIBRA polymorphism showed better spatial learning compared to C homozygotes. Together these findings provide the first evidence for an effect of the KIBRA rs17070145 polymorphism on spatial memory in humans and age differences in the reliance on landmark and boundary-related spatial information.

摘要

空间导航依赖于多种记忆机制,以前在年轻成年人中的研究已经描述了两种不同类型的空间记忆。一种类型使用方向和边界相关的信息来进行空间记忆,主要涉及海马体结构。另一种类型与方向和地标相关的信息有关,主要涉及纹状体。使用虚拟现实导航范式,我们研究了衰老和 KIBRA 基因(官方名称:WWC1)的单个核苷酸多态性(SNP rs17070145)对这些记忆形式的影响。我们的数据表明,老年人的空间学习与地标信息的处理有关,而边界信息的处理在年轻人中起着更为突出的作用。此外,在老年人中,被检测到的 KIBRA 多态性的 T 等位基因携带者与 C 纯合子相比,空间学习能力更好。这些发现首次为 KIBRA rs17070145 多态性对人类空间记忆的影响以及对地标和边界相关空间信息的依赖的年龄差异提供了证据。

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