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Article

Acceleration of chemical shift encoding-based water fat MRI for liver proton density fat fraction and T2* mapping using compressed sensing

2019-07-03

Abstract excerpt

<h4>Objectives</h4> To evaluate proton density fat fraction (PDFF) and T2* measurements of the liver with combined parallel imaging (sensitivity encoding, SENSE) and compressed sensing (CS) accelerated chemical shift encoding-based water-fat separation. <h4>Methods</h4> Six-echo Dixon imaging was performed in the liver of 89 subjects. The first acquisition variant used acceleration based on SENSE with a total acce...

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Literature Corpus work
dd56d1a7-b12c-5592-83a6-de42d46b8de9
DOI
10.1101/19000927
Open publication

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Acceleration of chemical shift encoding-based water fat MRI for liver proton density fat fraction and T2* mapping using compressed sensingDOI 10.1101/19000927
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