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静息态人脑的 BOLD-fMRI 和恒输注 FDG-PET 数据。

Simultaneous BOLD-fMRI and constant infusion FDG-PET data of the resting human brain.

机构信息

Monash Biomedical Imaging, Monash University, Melbourne, VIC, Australia.

Australian Research Council Centre of Excellence for Integrative Brain Function, Melbourne, Australia.

出版信息

Sci Data. 2020 Oct 21;7(1):363. doi: 10.1038/s41597-020-00699-5.

Abstract

Simultaneous [18 F]-fluorodeoxyglucose positron emission tomography and functional magnetic resonance imaging (FDG-PET/fMRI) provides the capability to image two sources of energetic dynamics in the brain - cerebral glucose uptake and the cerebrovascular haemodynamic response. Resting-state fMRI connectivity has been enormously useful for characterising interactions between distributed brain regions in humans. Metabolic connectivity has recently emerged as a complementary measure to investigate brain network dynamics. Functional PET (fPET) is a new approach for measuring FDG uptake with high temporal resolution and has recently shown promise for assessing the dynamics of neural metabolism. Simultaneous fMRI/fPET is a relatively new hybrid imaging modality, with only a few biomedical imaging research facilities able to acquire FDG PET and BOLD fMRI data simultaneously. We present data for n = 27 healthy young adults (18-20 yrs) who underwent a 95-min simultaneous fMRI/fPET scan while resting with their eyes open. This dataset provides significant re-use value to understand the neural dynamics of glucose metabolism and the haemodynamic response, the synchrony, and interaction between these measures, and the development of new single- and multi-modality image preparation and analysis procedures.

摘要

同步 [18F]-氟脱氧葡萄糖正电子发射断层扫描和功能磁共振成像(FDG-PET/fMRI)能够同时对大脑中的两个能量动力学源进行成像——脑葡萄糖摄取和脑血管血液动力学反应。静息状态 fMRI 连接性对于描述人类大脑中分布式脑区之间的相互作用非常有用。代谢连接性最近作为一种互补的测量方法出现,用于研究大脑网络动力学。功能 PET(fPET)是一种新的测量 FDG 摄取的方法,具有高时间分辨率,并且最近在评估神经代谢动力学方面显示出了潜力。同步 fMRI/fPET 是一种相对较新的混合成像方式,只有少数生物医学成像研究设施能够同时获取 FDG PET 和 BOLD fMRI 数据。我们提供了 n=27 名健康年轻成年人(18-20 岁)的数据,这些人在睁眼休息时进行了 95 分钟的同步 fMRI/fPET 扫描。该数据集对于理解葡萄糖代谢和血液动力学反应的神经动力学、这些测量之间的同步性和相互作用,以及新的单模态和多模态图像准备和分析程序的开发具有重要的再利用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b83d/7578808/143e44feb395/41597_2020_699_Fig1_HTML.jpg

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