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Finite element models for fracture prevention in patients with metastatic bone disease. A literature review

机译:转移性骨病患者骨折预防有限元模型。文学评论

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摘要

Patients with bone metastases have an increased risk to sustain a pathological fracture as lytic metastatic lesions damage and weaken the bone. In order to prevent fractures, prophylactic treatment is advised for patients with a high fracture risk. Mechanical stabilization of the femur can be provided through femoroplasty, a minimally invasive procedure where bone cement is injected into the lesion, or through internal fixation with intra- or extramedullary implants. Clinicians face the task of determining whether or not prophylactic treatment is required and which treatment would be the most optimal. Finite element (FE) models are promising tools that could support this decision process. The aim of this paper is to provide an overview of the state-of-the-art in FE modeling for the treatment decision of metastatic bone lesions in the femur. First, we will summarize the clinical and mechanical results of femoroplasty as a prophylactic treatment method. Secondly, current FE models for fracture risk assessment of metastatic femurs will be reviewed and the remaining challenges for clinical implementation will be discussed. Thirdly, we will elaborate on the simulation of femoroplasty in FE models and discuss future opportunities. Femoroplasty has already proven to effectively relieve pain and improve functionality, but there remains uncertainty whether it provides sufficient mechanical strengthening to prevent pathological fractures. FE models could help to select appropriate candidates for whom femoroplasty provides sufficient increase in strength and to further improve the mechanical benefit by optimizing the locations for cement augmentation.
机译:骨转移患者具有增加的风险,以维持病理骨折作为裂解性损伤的损伤并削弱骨骼。为了防止骨折,建议预防性治疗患者患有高骨折风险的患者。通过股骨成形术,可以通过股骨成形术提供股骨的机械稳定,其中骨水泥注入病变,或通过内固定用内部固定或蛋白质植入物。临床医生面临着确定是否需要预防性治疗的任务,并且哪种治疗是最佳的。有限元(FE)模型是有希望的工具,可以支持此决策过程。本文的目的是提供股骨转移骨病变治疗决策的FE模型的概述。首先,我们将总结股骨成形术作为预防性处理方法的临床和机械结果。其次,将审查用于转移性股骨的裂缝风险评估的当前FE模型,并将讨论临床实施的剩余挑战。第三,我们将详细阐述Fe模型中股骨成形术的仿真,并讨论未来的机会。股骨成形术已经证明有效缓解疼痛和改善功能,但仍然存在不确定性,无论它提供足够的机械加强,以防止病理骨折。 FE模型可以帮助选择股骨成形术提供足够的力量增加的合适候选者,并通过优化水泥增强的位置进一步改善机械益处。

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