首页> 外文期刊>International journal for numerical methods in biomedical engineering >Bone fracture healing under Ilizarov fixator: Influence of fixator configuration, fracture geometry, and loading
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Bone fracture healing under Ilizarov fixator: Influence of fixator configuration, fracture geometry, and loading

机译:Ilizarov固定器在骨骨折愈合中的作用:固定器配置,骨折几何形状和载荷的影响

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This study aims to enhance the understanding of the relationship between Ilizarov fixator configuration and its effects on bone fracture healing. Using Taylor spatial frame (TSF) as an example, the roles of critical parameters (ie, TSF ring diameter, wire pre-tension, fracture gap size, and axial load) that govern fracture healing during the early stages were investigated by using computational modelling in conjunction with mechanical testing involving an advanced 3D optical measurement system. The computational model was first validated using the mechanical test results and then used to simulate mesenchymal stem cell (MSC) differentiations within different regions of the fracture site under various combinations of TSF ring diameter, wire pre-tension, fracture gap size, and axial load values. Predicted spatially dependent MSC differentiation patterns and the influence of each parameter on differentiations were compared with in vivo results, and good agreement was seen between the two. Gap size was identified as the most influential parameter in MSC differentiation, and the influence of axial loading and TSF configuration (ie, ring diameter and wire pre-tension) on cell differentiation was seen to be gap size dependent. Most changes in cell differentiation were predicted in the external callus (periosteal), which is the crucial region of the callus in the early stages. However, for small gap sizes (eg, 1 mm), significant changes were predicted in the endosteal callus as well. The study exhibits the potential of computational models in assessing the performance of Ilizarov fixators as well as assisting surgeons in patient-specific clinical treatment planning.
机译:这项研究旨在增进对Ilizarov固定器配置与其对骨折愈合的影响之间关系的理解。以泰勒空间框架(TSF)为例,通过计算模型研究了控制早期骨折愈合的关键参数(即,TSF环直径,钢丝预紧力,断裂间隙尺寸和轴向载荷)的作用。结合涉及先进3D光学测量系统的机械测试。首先使用机械测试结果验证了计算模型,然后将其用于模拟在TSF环直径,导线预紧力,断裂间隙尺寸和轴向载荷的各种组合下骨折部位不同区域内的间充质干细胞(MSC)分化价值观。将预测的空间依赖性MSC分化模式和每个参数对分化的影响与体内结果进行了比较,两者之间取得了很好的一致性。间隙大小被认为是MSC分化中最有影响力的参数,并且轴向载荷和TSF构型(即环直径和导线预紧力)对细胞分化的影响被视为与间隙大小有关。预测细胞分化的大多数变化是在外部愈伤组织(骨膜)中,这是早期愈伤组织的关键区域。然而,对于较小的间隙大小(例如1 mm),也预测了骨膜内骨call的显着变化。这项研究展示了计算模型在评估Ilizarov固定器性能以及协助外科医生进行针对患者的临床治疗计划中的潜力。

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