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年老小鼠空间神经表象形成的延迟。

Delayed formation of neural representations of space in aged mice.

机构信息

Dominick P. Purpura Department of Neuroscience and Gottesmann Institute for Stem Cell Biology and Regenerative Medicine, Albert Einstein College of Medicine, Bronx, New York, USA.

出版信息

Aging Cell. 2023 Sep;22(9):e13924. doi: 10.1111/acel.13924. Epub 2023 Jul 25.

Abstract

Aging is associated with cognitive deficits, with spatial memory being very susceptible to decline. The hippocampal dentate gyrus (DG) is important for processing spatial information in the brain and is particularly vulnerable to aging, yet its sparse activity has led to difficulties in assessing changes in this area. Using in vivo two-photon calcium imaging, we compared DG neuronal activity and representations of space in young and aged mice walking on an unfamiliar treadmill. We found that calcium activity was significantly higher and less tuned to location in aged mice, resulting in decreased spatial information encoded in the DG. However, with repeated exposure to the same treadmill, both spatial tuning and information levels in aged mice became similar to young mice, while activity remained elevated. Our results show that spatial representations of novel environments are impaired in the aged hippocampus and gradually improve with increased familiarity. Moreover, while the aged DG is hyperexcitable, this does not disrupt neural representations of familiar environments.

摘要

衰老是与认知缺陷相关的,其中空间记忆特别容易下降。海马齿状回(DG)对于大脑中空间信息的处理很重要,并且特别容易受到衰老的影响,但它稀疏的活动导致评估该区域变化的困难。使用体内双光子钙成像,我们比较了在不熟悉的跑步机上行走的年轻和年老小鼠的 DG 神经元活动和空间表示。我们发现,钙活性在年老小鼠中显著更高且对位置的调谐性更低,导致 DG 中编码的空间信息减少。然而,随着对同一跑步机的重复暴露,年老小鼠的空间调谐和信息水平变得与年轻小鼠相似,而活动仍然升高。我们的结果表明,新环境的空间表示在衰老的海马体中受损,并且随着熟悉程度的增加而逐渐改善。此外,尽管年老的 DG 过度兴奋,但这不会破坏对熟悉环境的神经表示。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/deca/10497831/4e13099e4976/ACEL-22-e13924-g004.jpg

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