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Uthayakumar, B.

Publications and source records attributed to Uthayakumar, B..

2 recordsLinked to original sources

Task Activation Results in Regional 13C-Lactate Signal Increase in the Human Brain

Hyperpolarized-13C magnetic resonance imaging (HP-13C MRI) was used to image changes in 13C-lactate signal during a visual stimulus condition in comparison to an eyes-closed control condition. Whole-brain 13C-pyruvate, 13C-lactate and 13C-bicarbonate production was imaged in healthy volunteers (N=6, ages 24-33) for the two conditions using two separate hyperpolarized 13C-pyruvate injections. BOLD-fMRI scans were used to delineate regions of functional activation. 13C-metabolite signal was normalized by 13C-metabolite signal from the brainstem and the percentage change in 13C-metabolite signal conditions was calculated. A one-way Wilcoxon signed-rank test showed a significant increase in 13C-lactate in regions of activation when compared to the remainder of the brain (p = 0.02, V = 21). No significant increase was observed in 13C-pyruvate (p = 0.11, V = 17) or 13C-bicarbonate (p = 0.95, V = 3) signal. The results show an increase in 13C-lactate production in the activated region that is measurable with HP-13C MRI.

neuroscience↗

Evidence of Lactate Shuttling in the Human Brain using Hyperpolarized 13C-MRI

PurposeTo test the hypothesis that lactate shuttling contributes to the 13C-lactate and 13C-bicarbonate signal observed in the awake human brain using hyperpolarized 13C MRI. MethodsHealthy human volunteers (n = 6) were scanned twice using hyperpolarized 13C-MRI, with reduced radiofrequency saturation of 13C-lactate on one set of scans. 13C-lactate, 13C-bicarbonate, and 13C-pyruvate signals for 132 brain regions across each set of scans were compared using a clustered Wilcoxon sum rank test. ResultsReduced 13C-lactate radiofrequency saturation resulted in a significantly greater 13C-bicarbonate signal (p = 0.04). These changes were observed across the majority of brain regions. ConclusionRadiofrequency saturation of 13C-lactate leads to a decrease in 13C-bicarbonate signal, demonstrating that the 13C-lactate generated from the injected 13C-pyruvate is being converted back to 13C-pyruvate and oxidized throughout the human brain.

neuroscience↗