Literature DB >> 22986357

Absolute quantification of resting oxygen metabolism and metabolic reactivity during functional activation using QUO2 MRI.

C J Gauthier1, L Desjardins-Crépeau, C Madjar, L Bherer, R D Hoge.   

Abstract

We have recently described an extension of calibrated MRI, which we term QUO2 (for QUantitative O(2) imaging), providing absolute quantification of resting oxidative metabolism (CMRO(2)) and oxygen extraction fraction (OEF(0)). By combining BOLD, arterial spin labeling (ASL) and end-tidal O(2) measurements in response to hypercapnia, hyperoxia and combined hyperoxia/hypercapnia manipulations, and the same MRI measurements during a task, a comprehensive set of vascular and metabolic measurements can be obtained using a generalized calibration model (GCM). These include the baseline absolute CBF in units of ml/100g/min, cerebrovascular reactivity (CVR) in units of %Δ CBF/mm Hg, M in units of percent, OEF(0) and CMRO(2) at rest in units of μmol/100g/min, percent evoked CMRO(2) during the task and n, the value for flow-metabolic coupling associated with the task. The M parameter is a calibration constant corresponding to the maximal BOLD signal that would occur upon removal of all deoxyhemoglobin. We have previously shown that the GCM provides estimates of the above resting parameters in grey matter that are in excellent agreement with literature. Here we demonstrate the method using functionally-defined regions-of-interest in the context of an activation study. We applied the method under high and low signal-to-noise conditions, corresponding respectively to a robust visual stimulus and a modified Stroop task. The estimates fall within the physiological range of literature values, showing the general validity of the GCM approach to yield non-invasively an extensive array of relevant vascular and metabolic parameters.
Copyright © 2012 Elsevier Inc. All rights reserved.

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Year:  2012        PMID: 22986357     DOI: 10.1016/j.neuroimage.2012.07.065

Source DB:  PubMed          Journal:  Neuroimage        ISSN: 1053-8119            Impact factor:   6.556


  36 in total

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3.  The cumulative influence of hyperoxia and hypercapnia on blood oxygenation and R*₂.

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Review 4.  Making big data open: data sharing in neuroimaging.

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7.  Higher cardiovascular fitness level is associated with lower cerebrovascular reactivity and perfusion in healthy older adults.

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Review 10.  Biomarkers, designs, and interpretations of resting-state fMRI in translational pharmacological research: A review of state-of-the-Art, challenges, and opportunities for studying brain chemistry.

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Journal:  Hum Brain Mapp       Date:  2017-02-01       Impact factor: 5.038

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