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Associations between bone material strength index and FRAX scores

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journal contribution
posted on 2025-05-23, 05:04 authored by Pam Rufus-MemberePam Rufus-Membere, Kara AndersonKara Anderson, Kara L Holloway-Kew, Mark A Kotowicz, Adolfo Diez-Perez, Julie PascoJulie Pasco
Abstract Introduction Impact microindentation (IMI) measures bone material strength index (BMSi) in vivo. However, its ability to predict fractures is still uncertain. This study aimed to determine the association between BMSi and 10 year fracture probability, as calculated by the FRAX algorithm. Materials and methods BMSi was measured using the OsteoProbe in 388 men (ages 40–90 yr) from the Geelong Osteoporosis Study. The probabilities for a major osteoporotic fracture (MOF) and hip fracture (HF) were calculated using the Australian FRAX tool. Hip (HF) and major osteoporotic (MOF) fracture probabilities were computed with and without the inclusion of femoral neck bone mineral density (BMD). For each participant, four 10 year probability scores were therefore generated: (i) HF-FRAXnoBMD; (ii) HF-FRAXBMD; (iii) MOF-FRAXnoBMD; (iv) MOF-FRAXBMD. Results BMSi was negatively correlated with age (r = − 0.114, p = 0.025), no associations were detected between BMSi and femoral neck BMD (r = + 0.035, p = 0.507). BMSi was negatively correlated with HF-FRAXnoBMD (r = − 0.135, p = 0.008) and MOF-FRAXnoBMD (r = − 0.153, p = 0.003). These trends held true for HF-FRAXBMD (r = − 0.087, p = 0.094) and MOF-FRAXBMD (r = − 0.111, p = 0.034), but only the latter reached significance. Conclusion BMSi captures the cumulative effect of clinical risk factors in the FRAX algorithm, suggesting that it could provide additional information that may be useful in predicting risk of fractures. Further studies are warranted to establish its efficacy in predicting fracture risk.

History

Journal

Journal of Bone and Mineral Metabolism

Volume

43

Pagination

230-236

Location

Berlin, Germany

Open access

  • Yes

ISSN

0914-8779

eISSN

1435-5604

Language

eng

Publication classification

C1 Refereed article in a scholarly journal

Publisher

Springer

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