Measurement of collateral perfusion in acute stroke: a vessel-encoded arterial spin labeling study

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作者
Thomas W. Okell
George W. J. Harston
Michael A. Chappell
Fintan Sheerin
James Kennedy
Peter Jezzard
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[1] University of Oxford,Wellcome Centre for Integrative Neuroimaging (FMRIB), Nuffield Department of Clinical Neurosciences
[2] University of Oxford,Acute Vascular Imaging Centre, Radcliffe Department of Medicine
[3] Acute Stroke Service,IBME, Department of Engineering Sciences
[4] Oxford University Hospitals NHS Foundation Trust,Department of Neuroradiology
[5] University of Oxford,undefined
[6] Oxford University Hospitals NHS Foundation Trust,undefined
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Collateral perfusion is important for sustaining tissue viability in acute ischemic stroke. Conventional techniques for its visualization are invasive, require contrast agents and demonstrate collateral vessels, rather than measuring perfusion directly. In this study we utilize a non-invasive, non-contrast magnetic resonance imaging (MRI)-based method to directly quantify collateral perfusion in acute stroke patients. Vessel-encoded multi-postlabeling delay arterial spin labeling (ASL) was used to separately quantify the blood flow and blood arrival time from four arteries supplying the brain in patients presenting within 18 hours of stroke onset. Twenty-nine acute ischemic stroke patients were scanned with a median time of onset to first MRI of 3 hours. Collateral perfusion at presentation was associated with tissue fate at 1-week. It sustained tissue prior to reperfusion, but was less effective than direct blood flow at maintaining tissue viability in patients who did not reperfuse. Delay in the blood arrival around the ischemic region was found at presentation and reduced over time but was not consistently associated with collateral perfusion. Vessel-encoded multi-postlabeling delay ASL provides a non-invasive tool for direct measurement of collateral perfusion and delayed blood arrival in acute stroke patients.
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