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Phosphorus spectroscopy in acute TBI demonstrates metabolic changes that relate to outcome in the presence of normal structural MRI.


ABSTRACT: Metabolic dysfunction is a key pathophysiological process in the acute phase of traumatic brain injury (TBI). Although changes in brain glucose metabolism and extracellular lactate/pyruvate ratio are well known, it was hitherto unknown whether these translate to downstream changes in ATP metabolism and intracellular pH. We have performed the first clinical voxel-based in vivo phosphorus magnetic resonance spectroscopy (31P MRS) in 13 acute-phase major TBI patients versus 10 healthy controls (HCs), at 3T, focusing on eight central 2.5 × 2.5 × 2.5 cm3 voxels per subject. PCr/γATP ratio (a measure of energy status) in TBI patients was significantly higher (median = 1.09) than that of HCs (median = 0.93) (p < 0.0001), due to changes in both PCr and ATP. There was no significant difference in PCr/γATP between TBI patients with favourable and unfavourable outcome. Cerebral intracellular pH of TBI patients was significantly higher (median = 7.04) than that of HCs (median = 7.00) (p = 0.04). Alkalosis was limited to patients with unfavourable outcome (median = 7.07) (p < 0.0001). These changes persisted after excluding voxels with > 5% radiologically visible injury. This is the first clinical demonstration of brain alkalosis and elevated PCr/γATP ratio acutely after major TBI. 31P MRS has potential for non-invasively assessing brain injury in the absence of structural injury, predicting outcome and monitoring therapy response.

SUBMITTER: Stovell MG 

PROVIDER: S-EPMC6927074 | biostudies-literature | 2020 Jan

REPOSITORIES: biostudies-literature

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Phosphorus spectroscopy in acute TBI demonstrates metabolic changes that relate to outcome in the presence of normal structural MRI.

Stovell Matthew G MG   Mada Marius O MO   Carpenter T Adrian TA   Yan Jiun-Lin JL   Guilfoyle Mathew R MR   Jalloh Ibrahim I   Welsh Karen E KE   Helmy Adel A   Howe Duncan J DJ   Grice Peter P   Mason Andrew A   Giorgi-Coll Susan S   Gallagher Clare N CN   Murphy Michael P MP   Menon David K DK   Hutchinson Peter J PJ   Carpenter Keri Lh KL  

Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism 20180918 1


Metabolic dysfunction is a key pathophysiological process in the acute phase of traumatic brain injury (TBI). Although changes in brain glucose metabolism and extracellular lactate/pyruvate ratio are well known, it was hitherto unknown whether these translate to downstream changes in ATP metabolism and intracellular pH. We have performed the first clinical voxel-based <i>in vivo</i> phosphorus magnetic resonance spectroscopy (<sup>31</sup>P MRS) in 13 acute-phase major TBI patients versus 10 hea  ...[more]

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