Measurement of spleen fat on MRI-proton density fat fraction arises from reconstruction of noise

Purpose This study compares splenic proton density fat fraction (PDFF) measured using confounder-corrected chemical shift-encoded (CSE)-MRI to magnetic resonance spectroscopy (MRS) in human patients at 3T. Methods This was a prospectively designed ancillary study to various previously described sing...

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Veröffentlicht in:Abdominal imaging 2019-10, Vol.44 (10), p.3295-3303
Hauptverfasser: Hong, Cheng William, Hamilton, Gavin, Hooker, Catherine, Park, Charlie C., Tran, Calvin Andrew, Henderson, Walter C., Hooker, Jonathan C., Fazeli Dehkordy, Soudabeh, Schwimmer, Jeffrey B., Reeder, Scott B., Sirlin, Claude B.
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Sprache:eng
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Zusammenfassung:Purpose This study compares splenic proton density fat fraction (PDFF) measured using confounder-corrected chemical shift-encoded (CSE)-MRI to magnetic resonance spectroscopy (MRS) in human patients at 3T. Methods This was a prospectively designed ancillary study to various previously described single-center studies performed in adults and children with known or suspected nonalcoholic fatty liver disease. Patients underwent magnitude-based MRI (MRI-M), complex-based MRI (MRI-C), high signal-to-noise variants (Hi-SNR MRI-M and Hi-SNR MRI-C), and MRS at 3T for spleen PDFF estimation. PDFF from CSE-MRI methods were compared to MRS-PDFF using Wilcoxon signed-rank tests. Demographics were summarized descriptively. Spearman’s rank correlations were computed pairwise between CSE-MRI methods. Individual patient measurements were plotted for qualitative assessment. A significance level of 0.05 was used. Results Forty-seven patients (20 female, 27 male) including 12 adults (median 55 years old) and 35 children (median 12 years old). Median PDFF estimated by MRS, MRI-M, Hi-SNR MRI-M, MRI-C, and Hi-SNR MRI-C was 1.0, 2.3, 1.9, 2.2, and 2.0%. The four CSE-MRI methods estimated statistically significant higher spleen PDFF values compared to MRS ( p  
ISSN:2366-004X
2366-0058
2366-0058
DOI:10.1007/s00261-019-02079-z