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一种用于定量测量大鼠局部脑能量底物摄取的双示踪剂PET-MRI方案。

A dual tracer PET-MRI protocol for the quantitative measure of regional brain energy substrates uptake in the rat.

作者信息

Roy Maggie, Nugent Scott, Tremblay Sébastien, Descoteaux Maxime, Beaudoin Jean-François, Tremblay Luc, Lecomte Roger, Cunnane Stephen C

机构信息

Research Center on Aging and Department of Physiology and Biophysics, Université de Sherbrooke.

出版信息

J Vis Exp. 2013 Dec 28(82):50761. doi: 10.3791/50761.

Abstract

We present a method for comparing the uptake of the brain's two key energy substrates: glucose and ketones (acetoacetate [AcAc] in this case) in the rat. The developed method is a small-animal positron emission tomography (PET) protocol, in which (11)C-AcAc and (18)F-fluorodeoxyglucose ((18)F-FDG) are injected sequentially in each animal. This dual tracer PET acquisition is possible because of the short half-life of (11)C (20.4 min). The rats also undergo a magnetic resonance imaging (MRI) acquisition seven days before the PET protocol. Prior to image analysis, PET and MRI images are coregistered to allow the measurement of regional cerebral uptake (cortex, hippocampus, striatum, and cerebellum). A quantitative measure of (11)C-AcAc and (18)F-FDG brain uptake (cerebral metabolic rate; μmol/100 g/min) is determined by kinetic modeling using the image-derived input function (IDIF) method. Our new dual tracer PET protocol is robust and flexible; the two tracers used can be replaced by different radiotracers to evaluate other processes in the brain. Moreover, our protocol is applicable to the study of brain fuel supply in multiple conditions such as normal aging and neurodegenerative pathologies such as Alzheimer's and Parkinson's diseases.

摘要

我们提出了一种比较大鼠大脑两种关键能量底物(葡萄糖和酮类,在本研究中为乙酰乙酸[AcAc])摄取情况的方法。所开发的方法是一种小动物正电子发射断层扫描(PET)方案,其中在每只动物中依次注射(11)C-AcAc和(18)F-氟脱氧葡萄糖((18)F-FDG)。由于(11)C的半衰期短(20.4分钟),这种双示踪剂PET采集是可行的。在PET方案实施前七天,大鼠还需进行磁共振成像(MRI)采集。在图像分析之前,将PET和MRI图像进行配准,以测量区域脑摄取(皮质、海马体、纹状体和小脑)。使用图像衍生输入函数(IDIF)方法通过动力学建模确定(11)C-AcAc和(18)F-FDG脑摄取的定量测量值(脑代谢率;μmol/100 g/min)。我们新的双示踪剂PET方案稳健且灵活;所使用的两种示踪剂可以被不同的放射性示踪剂替代,以评估大脑中的其他过程。此外,我们的方案适用于多种情况下的脑燃料供应研究,如正常衰老以及阿尔茨海默病和帕金森病等神经退行性疾病。

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本文引用的文献

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