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Cerebrovascular super-resolution 4D Flow MRI – using deep learning to non-invasively quantify velocity, flow, and relative pressure

2021-08-27

Abstract excerpt

<h4>ABSTRACT</h4> The development of cerebrovascular disease is tightly coupled to changes in cerebrovascular hemodynamics, with altered flow and relative pressure indicative of the onset, development, and acute manifestation of pathology. Image-based monitoring of cerebrovascular hemodynamics is, however, complicated by the narrow and tortuous vasculature, where accurate output directly depends on sufficient spa...

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Literature Corpus work
cfd375a3-7be8-5bb0-bc9a-fb5462be727d
DOI
10.1101/2021.08.25.457611
Open publication

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Cerebrovascular super-resolution 4D Flow MRI – using deep learning to non-invasively quantify velocity, flow, and relative pressureDOI 10.1101/2021.08.25.457611
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