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成骨不全症骨强度的有限元分析

Finite element analysis of bone strength in osteogenesis imperfecta.

作者信息

Varga Peter, Willie Bettina M, Stephan Chris, Kozloff Kenneth M, Zysset Philippe K

机构信息

AO Research Institute Davos, Davos, Switzerland.

Research Centre, Shriners Hospital for Children-Canada, Montreal, Canada; Department of Pediatric Surgery, McGill University, Montreal, Canada.

出版信息

Bone. 2020 Apr;133:115250. doi: 10.1016/j.bone.2020.115250. Epub 2020 Jan 22.

Abstract

As a dedicated experimentalist, John Currey praised the high potential of finite element (FE) analysis but also recognized its critical limitations. The application of the FE methodology to bone tissue is reviewed in the light of his enthusiastic and colorful statements. In the past decades, FE analysis contributed substantially to the understanding of structure-function properties in the hierarchical organization of bone and to the simulation of bone adaptation. The systematic experimental validation of FE analysis of bone strength in anatomical locations at risk of fracture led to its application in clinical studies to evaluate efficacy of antiresorptive or anabolic treatment of bone fragility. Beyond the successful analyses of healthy or osteoporotic bone, FE analysis becomes increasingly involved in the investigation of other fragility-related bone diseases. The case of osteogenesis imperfecta (OI) is exposed, the multiscale alterations of the bone tissue and the effect of treatment summarized. A few FE analyses attempting to answer open questions in OI are then reported. An original study is finally presented that explored the structural properties of the Brtl/+ murine model of OI type IV subjected to sclerostin neutralizing antibody treatment using microFE analysis. The use of identical material properties in the four-point bending FE simulations of the femora reproduced not only the experimental values but also the statistical comparisons examining the effect of disease and treatment. Further efforts are needed to build upon the extraordinary legacy of John Currey and clarify the impact of different bone diseases on the hierarchical mechanical properties of bone.

摘要

作为一名专注的实验主义者,约翰·柯里赞扬了有限元(FE)分析的巨大潜力,但也认识到其关键局限性。鉴于他热情洋溢且生动多彩的表述,本文回顾了有限元方法在骨组织中的应用。在过去几十年里,有限元分析对理解骨的层次结构中的结构 - 功能特性以及骨适应性模拟做出了重大贡献。对骨折风险解剖部位骨强度的有限元分析进行系统的实验验证,使其在临床研究中得以应用,以评估抗吸收或促合成治疗骨脆性的疗效。除了对健康或骨质疏松性骨的成功分析外,有限元分析越来越多地参与到其他与脆性相关的骨疾病的研究中。本文阐述了成骨不全症(OI)的情况,总结了骨组织的多尺度改变及治疗效果。随后报告了一些试图回答OI中未解决问题的有限元分析。最后展示了一项原创研究,该研究使用微观有限元分析探索了接受硬化蛋白中和抗体治疗的IV型OI的Brtl/+小鼠模型的结构特性。在股骨的四点弯曲有限元模拟中使用相同的材料属性,不仅再现了实验值,还进行了检验疾病和治疗效果的统计比较。需要进一步努力以继承约翰·柯里的卓越遗产,并阐明不同骨疾病对骨的层次力学性能的影响。

相似文献

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Finite element analysis of bone strength in osteogenesis imperfecta.成骨不全症骨强度的有限元分析
Bone. 2020 Apr;133:115250. doi: 10.1016/j.bone.2020.115250. Epub 2020 Jan 22.

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