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Empirical relationships between bone density and ultimate strength: A literature review

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dc.contributor Háskóli Íslands
dc.contributor University of Iceland
dc.contributor.author Fleps, Ingmar
dc.contributor.author Bahaloo, Hassan
dc.contributor.author Zysset, Philippe K.
dc.contributor.author Ferguson, Stephen J.
dc.contributor.author Pálsson, Halldór
dc.contributor.author Helgason, Benedikt
dc.date.accessioned 2020-11-09T15:06:43Z
dc.date.available 2020-11-09T15:06:43Z
dc.date.issued 2020-10
dc.identifier.citation Fleps, I., Bahaloo, H., Zysset, P., Ferguson, S., Pálsson, H., & Helgason, B. (2020). Empirical relationships between bone density and ultimate strength: A literature review. Journal of the Mechanical Behavior of Biomedical Materials, 110, 103866.
dc.identifier.issn 1751-6161
dc.identifier.uri https://hdl.handle.net/20.500.11815/2189
dc.description Publisher's version (útgefin grein)
dc.description.abstract Introduction: Ultimate strength-density relationships for bone have been reported with widely varying results. Reliable bone strength predictions are crucial for many applications that aim to assess bone failure. Bone density and bone morphology have been proposed to explain most of the variance in measured bone strength. If this holds true, it could lead to the derivation of a single ultimate strength-density-morphology relationship for all anatomical sites. Methods: All relevant literature was reviewed. Ultimate strength-density relationships derived from mechanical testing of human bone tissue were included. The reported relationships were translated to ultimate strength-apparent density relationships and normalized with respect to strain rate. Results were grouped based on bone tissue type (cancellous or cortical), anatomical site, and loading mode (tension vs. compression). When possible, the relationships were compared to existing ultimate strength-density-morphology relationships. Results: Relationships that considered bone density and morphology covered the full spectrum of eight-fold inter-study difference in reported compressive ultimate strength-density relationships for trabecular bone. This was true for studies that tested specimens in different loading direction and tissue from different anatomical sites. Sparse data was found for ultimate strength-density relationships in tension and for cortical bone properties transverse to the main loading axis of the bone. Conclusions: Ultimate strength-density-morphology relationships could explain measured strength across anatomical sites and loading directions. We recommend testing of bone specimens in other directions than along the main trabecular alignment and to include bone morphology in studies that investigate bone material properties. The lack of tensile strength data did not allow for drawing conclusions on ultimate strength-density-morphology relationships. Further studies are needed. Ideally, these studies would investigate both tensile and compressive strength-density relationships, including morphology, to close this gap and lead to more accurate evaluation of bone failure.
dc.description.sponsorship This study was supported by the grant #2018-430 of the Strategic Focal Area “Personized Health and Related Technologies” of the ETH Domain, ETH Zurich , Switzerland and the St. Josef ‘s Hospital Fund , Reykjavik, Iceland.
dc.format.extent 103866
dc.language.iso en
dc.publisher Elsevier BV
dc.relation.ispartofseries Journal of the Mechanical Behavior of Biomedical Materials;110
dc.rights info:eu-repo/semantics/openAccess
dc.subject Bone
dc.subject Computed tomography
dc.subject Density
dc.subject Finite element
dc.subject Strength
dc.subject Beinþéttni
dc.subject Beinin
dc.subject Sneiðmyndatökur
dc.title Empirical relationships between bone density and ultimate strength: A literature review
dc.type info:eu-repo/semantics/article
dcterms.license This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
dc.description.version Peer Reviewed
dc.identifier.journal Journal of the Mechanical Behavior of Biomedical Materials
dc.identifier.doi 10.1016/j.jmbbm.2020.103866
dc.relation.url https://www.sciencedirect.com/science/article/pii/S1751616120304203?via%3Dihub
dc.contributor.department Iðnaðarverkfræði-, vélaverkfræði- og tölvunarfræðideild (HÍ)
dc.contributor.department Faculty of Industrial Eng., Mechanical Eng. and Computer Science (UI)
dc.contributor.school Verkfræði- og náttúruvísindasvið (HÍ)
dc.contributor.school School of Engineering and Natural Sciences (UI)


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