Back to Search Start Over

Quantification of shoulder muscle intramuscular fatty infiltration on T1-weighted MRI: a viable alternative to the Goutallier classification system.

Authors :
Davis, Derik L.
Kesler, Thomas
Gilotra, Mohit N.
Almardawi, Ranyah
Hasan, Syed A.
Gullapalli, Rao P.
Zhuo, Jiachen
Source :
Skeletal Radiology. Apr2019, Vol. 48 Issue 4, p535-541. 7p.
Publication Year :
2019

Abstract

<bold>Background: </bold>Quantification of rotator cuff intramuscular fatty infiltration is important for clinical decision-making in patients with rotator cuff tear. The semi-quantitative Goutallier classification system is the most commonly used method, but has limited reliability. Therefore, we sought to test a freely available fuzzy C-means segmentation software program for reliability of the quantification of shoulder intramuscular fatty infiltration on T1-weighted MR images and for correlation with fat fraction by six-point Dixon MRI.<bold>Materials and Methods: </bold>We performed a prospective cross-sectional study to measure visible intramuscular fat area percentage on oblique sagittal T1 MR images by fuzzy C-means segmentation and fat fraction maps by six-point Dixon MRI for 42 shoulder muscles. Intra- and inter-observer reliability were determined. Correlative analysis for fuzzy C-means and six-point Dixon intramuscular fatty infiltration measures was also performed.<bold>Results: </bold>We found that inter-observer reliability for the quantification of visible intramuscular fat area percentage by fuzzy C-means segmentation and fat fraction by six-point Dixon MRI was 0.947 and 0.951 respectively. The intra-observer reliability for the quantification of visible intramuscular fat area percentage by fuzzy C-means segmentation and fat fraction by six-point Dixon MRI was 0.871 and 0.979 respectively. We found a strong correlation between fuzzy C-means segmentation and six-point Dixon techniques; r = 0.850, p < 0.001 by individual muscle; and r = 0.977, p < 0.002 by study subject.<bold>Conclusion: </bold>Quantification of intramuscular fatty infiltration by fuzzy C-means segmentation on T1-weighted sequences demonstrates excellent reliability and strong correlation with fat fraction by six-point Dixon MRI. Quantitative fuzzy C-means segmentation is a viable alternative to the semi-quantitative Goutallier classification system. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03642348
Volume :
48
Issue :
4
Database :
Academic Search Index
Journal :
Skeletal Radiology
Publication Type :
Academic Journal
Accession number :
134766285
Full Text :
https://doi.org/10.1007/s00256-018-3057-7