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Transcranial contrast-enhanced ultrasound in the rat brain reveals substantial hyperperfusion acutely post-stroke
journal contribution
posted on 2020-05-01, 00:00 authored by D Premilovac, S J Blackwood, C J Ramsay, Michelle KeskeMichelle Keske, D W Howells, B A SutherlandDirect and real-time assessment of cerebral hemodynamics is key to improving our understanding of cerebral blood flow regulation in health and disease states such as stroke. While a number of sophisticated imaging platforms enable assessment of cerebral perfusion, most are limited either spatially or temporally. Here, we applied transcranial contrast-enhanced ultrasound (CEU) to measure cerebral perfusion in real-time through the intact rat skull before, during and after ischemic stroke, induced by intraluminal filament middle cerebral artery occlusion (MCAO). We demonstrate expected decreases in cortical and striatal blood volume, flow velocity and perfusion during MCAO. After filament retraction, blood volume and perfusion increased two-fold above baseline, indicative of acute hyperperfusion. Adjacent brain regions to the ischemic area and the contralateral hemisphere had increased blood volume during MCAO. We assessed our data using wavelet analysis to demonstrate striking vasomotion changes in the ischemic and contralateral cortices during MCAO and reperfusion. In conclusion, we demonstrate the application of CEU for real-time assessment of cerebral hemodynamics and show that the ischemic regions exhibit striking hyperemia post-MCAO. Whether this post-stoke hyperperfusion is sustained long-term and contributes to stroke severity is not known.
History
Journal
Journal of cerebral blood flow and metabolismVolume
40Issue
5Pagination
939 - 953Publisher
SAGE PublicationsLocation
London, Eng.Publisher DOI
ISSN
0271-678XeISSN
1559-7016Language
engPublication classification
C1 Refereed article in a scholarly journalUsage metrics
Categories
No categories selectedKeywords
Ischemic strokecontrast-enhanced ultrasoundcerebral blood flowmiddle cerebral artery occlusionratScience & TechnologyLife Sciences & BiomedicineEndocrinology & MetabolismHematologyNeurosciencesNeurosciences & NeurologyCEREBRAL-BLOOD-FLOWLASER-DOPPLER FLOWMETRYENDOVASCULAR THROMBECTOMYACUTE STROKEPERFUSIONISCHEMIANEUROPROTECTIONQUANTIFICATIONOSCILLATIONSTOMOGRAPHY