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氟代脱氧葡萄糖正电子发射断层扫描对记忆障碍病理生理学的贡献。

FDG-PET Contributions to the Pathophysiology of Memory Impairment.

作者信息

Segobin Shailendra, La Joie Renaud, Ritz Ludivine, Beaunieux Hélène, Desgranges Béatrice, Chételat Gaël, Pitel Anne Lise, Eustache Francis

机构信息

Inserm, U1077, Caen, France,

出版信息

Neuropsychol Rev. 2015 Sep;25(3):326-55. doi: 10.1007/s11065-015-9297-6. Epub 2015 Aug 30.

Abstract

Measurement of synaptic activity by Positron Emission Tomography (PET) and its relation to cognitive functions such as episodic memory, working memory and executive functions in healthy humans and patients with neurocognitive disorders have been well documented. In this review, we introduce the concept of PET imaging that allows the observation of a particular biological process in vivo through the use of radio-labelled compounds, its general use to the medical world and its contributions to the understanding of memory systems. We then focus on [(18)F]-2-fluoro-2-deoxy-D-glucose (FDG-PET), the radiotracer that is used to measure local cerebral metabolic rate of glucose that is indicative of synaptic activity in the brain. FDG-PET at rest has been at the forefront of functional neuroimaging over the past 3 decades, contributing to the understanding of cognitive functions in healthy humans and how these functional patterns change with cognitive alterations. We discuss methodological considerations that are important for optimizing FDG-PET imaging data prior to analysis. We then highlight the contribution of FDG-PET to the understanding of the patterns of functional differences in non-degenerative pathologies, normal ageing, and age-related neurodegenerative disorders. Through reasonable temporal and spatial resolution, its ability to measure synaptic activity in the whole brain, independently of any specific network and disease, makes it ideal to observe regional functional changes associated with memory impairment.

摘要

通过正电子发射断层扫描(PET)测量突触活动及其与健康人和神经认知障碍患者的情景记忆、工作记忆和执行功能等认知功能的关系已有充分记录。在本综述中,我们介绍了PET成像的概念,即通过使用放射性标记化合物在体内观察特定生物过程,其在医学领域的一般用途以及对理解记忆系统的贡献。然后,我们重点介绍[(18)F]-2-氟-2-脱氧-D-葡萄糖(FDG-PET),这种放射性示踪剂用于测量局部脑葡萄糖代谢率,它可指示大脑中的突触活动。在过去30年中,静息状态下的FDG-PET一直处于功能神经成像的前沿,有助于理解健康人的认知功能以及这些功能模式如何随认知改变而变化。我们讨论了在分析之前优化FDG-PET成像数据的重要方法学考虑因素。然后,我们强调了FDG-PET对理解非退行性疾病、正常衰老和年龄相关神经退行性疾病中功能差异模式的贡献。通过合理的时间和空间分辨率,它能够独立于任何特定网络和疾病测量全脑的突触活动,这使其成为观察与记忆障碍相关的区域功能变化的理想选择。

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