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Simultaneous Estimation of the Fat Fraction and R(2)(*) Via T(2)(*)-Corrected 6-Echo Dixon Volumetric Interpolated Breath-hold Examination Imaging for Osteopenia and Osteoporosis Detection: Correlations with Sex, Age, and Menopause

OBJECTIVE: To investigate the relationships of T(2)(*)-corrected 6-echo Dixon volumetric interpolated breath-hold examination (VIBE) imaging-based fat fraction (FF) and R(2)(*) values with bone mineral density (BMD); determine their associations with sex, age, and menopause; and evaluate the diagnos...

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Autores principales: Kim, Donghyun, Kim, Sung Kwan, Lee, Sun Joo, Choo, Hye Jung, Park, Jung Won, Kim, Kun Yung
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Korean Society of Radiology 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6536792/
https://www.ncbi.nlm.nih.gov/pubmed/31132817
http://dx.doi.org/10.3348/kjr.2018.0032
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author Kim, Donghyun
Kim, Sung Kwan
Lee, Sun Joo
Choo, Hye Jung
Park, Jung Won
Kim, Kun Yung
author_facet Kim, Donghyun
Kim, Sung Kwan
Lee, Sun Joo
Choo, Hye Jung
Park, Jung Won
Kim, Kun Yung
author_sort Kim, Donghyun
collection PubMed
description OBJECTIVE: To investigate the relationships of T(2)(*)-corrected 6-echo Dixon volumetric interpolated breath-hold examination (VIBE) imaging-based fat fraction (FF) and R(2)(*) values with bone mineral density (BMD); determine their associations with sex, age, and menopause; and evaluate the diagnostic performance of the FF and R(2)(*) for predicting osteopenia and osteoporosis. MATERIALS AND METHODS: This study included 153 subjects who had undergone magnetic resonance (MR) imaging, including MR spectroscopy (MRS) and T(2)(*)-corrected 6-echo Dixon VIBE imaging. The FF and R(2)(*) were measured at the L4 vertebra. The male and female groups were divided into two subgroups according to age or menopause. Lin's concordance and Pearson's correlation coefficients, Bland-Altman 95% limits of agreement, and the area under the curve (AUC) were calculated. RESULTS: The correlation between the spectroscopic and 6-echo Dixon VIBE imaging-based FF values was statistically significant for both readers (p(c) = 0.940 [reader 1], 0.908 [reader 2]; both p < 0.001). A small measurement bias was observed for the MRS-based FF for both readers (mean difference = −0.3% [reader 1], 0.1% [reader 2]). We found a moderate negative correlation between BMD and the FF (r = −0.411 [reader 1], −0.436 [reader 2]; both p <0.001) with younger men and premenopausal women showing higher correlations. R(2)(*) and BMD were more significantly correlated in women than in men, and the highest correlation was observed in postmenopausal women (r = 0.626 [reader 1], 0.644 [reader 2]; both p < 0.001). For predicting osteopenia and osteoporosis, the FF had a higher AUC in men and R(2)(*) had a higher AUC in women. The AUC for predicting osteoporosis was highest with a combination of the FF and R(2)(*) in postmenopausal women (AUC = 0.872 [reader 1], 0.867 [reader 2]; both p < 0.001). CONCLUSION: The FF and R(2)(*) measured using T(2)(*)-corrected 6-echo Dixon VIBE imaging can serve as predictors of osteopenia and osteoporosis. R(2)(*) might be useful for predicting osteoporosis, especially in postmenopausal women.
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spelling pubmed-65367922019-06-04 Simultaneous Estimation of the Fat Fraction and R(2)(*) Via T(2)(*)-Corrected 6-Echo Dixon Volumetric Interpolated Breath-hold Examination Imaging for Osteopenia and Osteoporosis Detection: Correlations with Sex, Age, and Menopause Kim, Donghyun Kim, Sung Kwan Lee, Sun Joo Choo, Hye Jung Park, Jung Won Kim, Kun Yung Korean J Radiol Musculoskeletal Imaging OBJECTIVE: To investigate the relationships of T(2)(*)-corrected 6-echo Dixon volumetric interpolated breath-hold examination (VIBE) imaging-based fat fraction (FF) and R(2)(*) values with bone mineral density (BMD); determine their associations with sex, age, and menopause; and evaluate the diagnostic performance of the FF and R(2)(*) for predicting osteopenia and osteoporosis. MATERIALS AND METHODS: This study included 153 subjects who had undergone magnetic resonance (MR) imaging, including MR spectroscopy (MRS) and T(2)(*)-corrected 6-echo Dixon VIBE imaging. The FF and R(2)(*) were measured at the L4 vertebra. The male and female groups were divided into two subgroups according to age or menopause. Lin's concordance and Pearson's correlation coefficients, Bland-Altman 95% limits of agreement, and the area under the curve (AUC) were calculated. RESULTS: The correlation between the spectroscopic and 6-echo Dixon VIBE imaging-based FF values was statistically significant for both readers (p(c) = 0.940 [reader 1], 0.908 [reader 2]; both p < 0.001). A small measurement bias was observed for the MRS-based FF for both readers (mean difference = −0.3% [reader 1], 0.1% [reader 2]). We found a moderate negative correlation between BMD and the FF (r = −0.411 [reader 1], −0.436 [reader 2]; both p <0.001) with younger men and premenopausal women showing higher correlations. R(2)(*) and BMD were more significantly correlated in women than in men, and the highest correlation was observed in postmenopausal women (r = 0.626 [reader 1], 0.644 [reader 2]; both p < 0.001). For predicting osteopenia and osteoporosis, the FF had a higher AUC in men and R(2)(*) had a higher AUC in women. The AUC for predicting osteoporosis was highest with a combination of the FF and R(2)(*) in postmenopausal women (AUC = 0.872 [reader 1], 0.867 [reader 2]; both p < 0.001). CONCLUSION: The FF and R(2)(*) measured using T(2)(*)-corrected 6-echo Dixon VIBE imaging can serve as predictors of osteopenia and osteoporosis. R(2)(*) might be useful for predicting osteoporosis, especially in postmenopausal women. The Korean Society of Radiology 2019-06 2019-04-26 /pmc/articles/PMC6536792/ /pubmed/31132817 http://dx.doi.org/10.3348/kjr.2018.0032 Text en Copyright © 2019 The Korean Society of Radiology http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Musculoskeletal Imaging
Kim, Donghyun
Kim, Sung Kwan
Lee, Sun Joo
Choo, Hye Jung
Park, Jung Won
Kim, Kun Yung
Simultaneous Estimation of the Fat Fraction and R(2)(*) Via T(2)(*)-Corrected 6-Echo Dixon Volumetric Interpolated Breath-hold Examination Imaging for Osteopenia and Osteoporosis Detection: Correlations with Sex, Age, and Menopause
title Simultaneous Estimation of the Fat Fraction and R(2)(*) Via T(2)(*)-Corrected 6-Echo Dixon Volumetric Interpolated Breath-hold Examination Imaging for Osteopenia and Osteoporosis Detection: Correlations with Sex, Age, and Menopause
title_full Simultaneous Estimation of the Fat Fraction and R(2)(*) Via T(2)(*)-Corrected 6-Echo Dixon Volumetric Interpolated Breath-hold Examination Imaging for Osteopenia and Osteoporosis Detection: Correlations with Sex, Age, and Menopause
title_fullStr Simultaneous Estimation of the Fat Fraction and R(2)(*) Via T(2)(*)-Corrected 6-Echo Dixon Volumetric Interpolated Breath-hold Examination Imaging for Osteopenia and Osteoporosis Detection: Correlations with Sex, Age, and Menopause
title_full_unstemmed Simultaneous Estimation of the Fat Fraction and R(2)(*) Via T(2)(*)-Corrected 6-Echo Dixon Volumetric Interpolated Breath-hold Examination Imaging for Osteopenia and Osteoporosis Detection: Correlations with Sex, Age, and Menopause
title_short Simultaneous Estimation of the Fat Fraction and R(2)(*) Via T(2)(*)-Corrected 6-Echo Dixon Volumetric Interpolated Breath-hold Examination Imaging for Osteopenia and Osteoporosis Detection: Correlations with Sex, Age, and Menopause
title_sort simultaneous estimation of the fat fraction and r(2)(*) via t(2)(*)-corrected 6-echo dixon volumetric interpolated breath-hold examination imaging for osteopenia and osteoporosis detection: correlations with sex, age, and menopause
topic Musculoskeletal Imaging
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6536792/
https://www.ncbi.nlm.nih.gov/pubmed/31132817
http://dx.doi.org/10.3348/kjr.2018.0032
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