摘要
HomeRadiologyVol. 307, No. 2 PreviousNext Reviews and CommentaryEditorialAdvances and Shortfalls in MRI Evaluation of OsteoporosisWon C. Bae Won C. Bae Author AffiliationsFrom the Department of Radiology, University of California San Diego, 9427 Health Sciences Dr, La Jolla, CA 92093.Address correspondence to the author (email: [email protected]).Won C. Bae Published Online:Jan 24 2023https://doi.org/10.1148/radiol.223144MoreSectionsFull textPDF ToolsImage ViewerAdd to favoritesCiteTrack CitationsPermissionsReprints ShareShare onFacebookTwitterLinked In References1. Bauer JS, Link TM. Advances in osteoporosis imaging. Eur J Radiol 2009;71(3):440–449. Crossref, Medline, Google Scholar2. Patsch JM, Burghardt AJ, Kazakia G, Majumdar S. Noninvasive imaging of bone microarchitecture. Ann N Y Acad Sci 2011;1240(1):77–87. Crossref, Medline, Google Scholar3. Weiger M, Stampanoni M, Pruessmann KP. Direct depiction of bone microstructure using MRI with zero echo time. Bone 2013;54(1):44–47. Crossref, Medline, Google Scholar4. Jones BC, Lee H, Cheng CC, et al. MRI quantification of cortical bone porosity, mineralization, and morphologic structure in postmenopausal osteoporosis. Radiology 2023;307(2):e221810. Link, Google Scholar5. Zhao X, Song HK, Seifert AC, Li C, Wehrli FW. Feasibility of assessing bone matrix and mineral properties in vivo by combined solid-state 1H and 31P MRI. PLoS One 2017;12(3):e0173995. [Published correction appears in PLoS One 2018;13(1):e0192186.] Crossref, Medline, Google Scholar6. Bae WC, Chen PC, Chung CB, Masuda K, D’Lima D, Du J. Quantitative ultrashort echo time (UTE) MRI of human cortical bone: correlation with porosity and biomechanical properties. J Bone Miner Res 2012;27(4):848–857. Crossref, Medline, Google Scholar7. Chang G, Honig S, Brown R, et al. Finite element analysis applied to 3-T MR imaging of proximal femur microarchitecture: lower bone strength in patients with fragility fractures compared with control subjects. Radiology 2014;272(2):464–474. Link, Google Scholar8. Morgan EF, Unnikrisnan GU, Hussein AI. Bone Mechanical Properties in Healthy and Diseased States. Annu Rev Biomed Eng 2018;20(1):119–143. Crossref, Medline, Google Scholar9. Jassal SK, von Muhlen D, Barrett-Connor E. Measures of renal function, BMD, bone loss, and osteoporotic fracture in older adults: the Rancho Bernardo study. J Bone Miner Res 2007;22(2):203–210. Crossref, Medline, Google ScholarArticle HistoryReceived: Dec 6 2022Revision requested: Dec 9 2022Revision received: Dec 9 2022Accepted: Dec 12 2022Published online: Jan 24 2023 FiguresReferencesRelatedDetailsAccompanying This ArticleMRI Quantification of Cortical Bone Porosity, Mineralization, and Morphologic Structure in Postmenopausal OsteoporosisJan 24 2023RadiologyRecommended Articles MRI Quantification of Cortical Bone Porosity, Mineralization, and Morphologic Structure in Postmenopausal OsteoporosisRadiology2023Volume: 307Issue: 2Acute and Stress-related Injuries of Bone and Cartilage: Pertinent Anatomy, Basic Biomechanics, and Imaging PerspectiveRadiology2016Volume: 280Issue: 1pp. 21-383-T MR Imaging of Proximal Femur Microarchitecture in Subjects with and without Fragility Fracture and Nonosteoporotic Proximal Femur Bone Mineral DensityRadiology2018Volume: 287Issue: 2pp. 608-619Imaging Findings of Metabolic Bone DiseaseRadioGraphics2016Volume: 36Issue: 6pp. 1871-1887Prediction of Hip Failure Load: In Vitro Study of 80 Femurs Using Three Imaging Methods and Finite Element Models—The European Fracture Study (EFFECT)Radiology2016Volume: 280Issue: 3pp. 837-847See More RSNA Education Exhibits Depiction Of Bone Microstructures Using Ultra-high Resolution CTDigital Posters2021How To Obtain Additional Bone Mineral Density Information From The Low-dose Chest CT ExaminationDigital Posters2021MRI of the Metabolic KneeDigital Posters2022 RSNA Case Collection Osteoid osteoma of the femurRSNA Case Collection2022Atypical insufficiency fracture RSNA Case Collection2020 Cervical spine goutRSNA Case Collection2022 Vol. 307, No. 2 Metrics Altmetric Score PDF download