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Updated: Oct 2, 2026

Cerebral Blood Flow-Based Resting State Functional Connectivity of the Human Brain using Optical Diffuse Correlation Spectroscopy
Published on: May 27, 2020
Mapping human brain networks using resting-state metabolic connectivity: concepts, methods, and foundational results
1School of Psychological Sciences, Monash University, Wellington Rd, Melbourne, Victoria, 3800, Australia.
Abstract:
The human brain is a complex network, whose functional properties are constrained by its anatomy and energetic constraints. Metabolic connectivity refers to coherent metabolic interactions between spatially distinct regions, and is most commonly measured using [18F]-fluorodeoxyglucose (FDG) positron emission tomography (PET). While metabolic connectivity as a field predates fMRI-derived functional connectivity measures, it was not until recently that it was possible to estimate a metabolic network at the individual person level. Here, we review the theoretical and historical contexts of metabolic connectivity, its physiological bases, major methodological approaches, and key findings in health and disease. The review highlights that metabolic connectivity yields unique insight into the functional interactions of the brain relative to fMRI, is predictive of cognition and individual phenotype, and displays unique patterns of time-variant state switching and gradient architecture. We conclude the review with a forward-looking perspective of the future of metabolic connectivity, and recommendations for extending the conceptual framework of the measure.
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Magnetic Resonance Imaging
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These technologies include computerized axial tomography (CAT or CT scans), positron-emission tomography (PET scans), magnetic resonance imaging (MRI), functional magnetic resonance imaging (fMRI), and Transcranial Magnetic Stimulation (TMS).

