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记忆、衰老和认知衰退的临床前磁共振成像与光谱研究

Preclinical Magnetic Resonance Imaging and Spectroscopy Studies of Memory, Aging, and Cognitive Decline.

作者信息

Febo Marcelo, Foster Thomas C

机构信息

Department of Psychiatry, William L. and Evelyn F. McKnight Brain Institute, University of Florida Gainesville, FL, USA.

Department of Neuroscience, William L. and Evelyn F. McKnight Brain Institute, University of Florida Gainesville, FL, USA.

出版信息

Front Aging Neurosci. 2016 Jun 29;8:158. doi: 10.3389/fnagi.2016.00158. eCollection 2016.

Abstract

Neuroimaging provides for non-invasive evaluation of brain structure and activity and has been employed to suggest possible mechanisms for cognitive aging in humans. However, these imaging procedures have limits in terms of defining cellular and molecular mechanisms. In contrast, investigations of cognitive aging in animal models have mostly utilized techniques that have offered insight on synaptic, cellular, genetic, and epigenetic mechanisms affecting memory. Studies employing magnetic resonance imaging and spectroscopy (MRI and MRS, respectively) in animal models have emerged as an integrative set of techniques bridging localized cellular/molecular phenomenon and broader in vivo neural network alterations. MRI methods are remarkably suited to longitudinal tracking of cognitive function over extended periods permitting examination of the trajectory of structural or activity related changes. Combined with molecular and electrophysiological tools to selectively drive activity within specific brain regions, recent studies have begun to unlock the meaning of fMRI signals in terms of the role of neural plasticity and types of neural activity that generate the signals. The techniques provide a unique opportunity to causally determine how memory-relevant synaptic activity is processed and how memories may be distributed or reconsolidated over time. The present review summarizes research employing animal MRI and MRS in the study of brain function, structure, and biochemistry, with a particular focus on age-related cognitive decline.

摘要

神经成像技术可对大脑结构和活动进行无创评估,并已被用于揭示人类认知衰老的可能机制。然而,这些成像方法在定义细胞和分子机制方面存在局限性。相比之下,动物模型中的认知衰老研究大多采用了一些技术,这些技术为影响记忆的突触、细胞、遗传和表观遗传机制提供了见解。在动物模型中使用磁共振成像和波谱学(分别为MRI和MRS)的研究已成为一套综合技术,能够将局部细胞/分子现象与更广泛的体内神经网络变化联系起来。MRI方法非常适合长时间对认知功能进行纵向跟踪,从而能够研究结构或活动相关变化的轨迹。结合分子和电生理工具以选择性地驱动特定脑区的活动,最近的研究已开始从神经可塑性的作用以及产生信号的神经活动类型方面揭示功能磁共振成像信号的意义。这些技术提供了一个独特的机会,来因果性地确定与记忆相关的突触活动是如何被处理的,以及随着时间的推移记忆是如何分布或重新巩固的。本综述总结了在脑功能、结构和生物化学研究中采用动物MRI和MRS的研究,特别关注与年龄相关的认知衰退。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a75c/4942756/d1a8d80978a9/fnagi-08-00158-g001.jpg

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