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首页> 外文期刊>Applied bionics and biomechanics >Coupling Musculoskeletal Dynamics and Subject-Specific Finite Element Analysis of Femoral Cortical Bone Failure after Endoprosthetic Knee Replacement
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Coupling Musculoskeletal Dynamics and Subject-Specific Finite Element Analysis of Femoral Cortical Bone Failure after Endoprosthetic Knee Replacement

机译:肌肉骨骼动力学和主题特定有限元分析股骨体内膝关节置换后股骨皮质骨衰竭

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Background and Objective. A common reconstruction procedure after a wide resection of bone tumors around the knee is endoprosthetic knee replacement. The aim of this study was to investigate the characteristics of bone injury of the patient after endoprosthetic knee replacement during walking. Methods. A subject-specific finite element model of the femur-prosthesis-tibia complex was established via CT scans. To obtain its physiologically realistic loading environments, the musculoskeletal inverse dynamic analysis was implemented. The extracted muscle forces and ground forces were then applied to the finite element model to investigate bone stress distribution at various stages of the gait cycle. Results. The maximum femur stress of each stage varied from 33.14?MPa to 70.61?MPa in the gait cycle. The stress concentration position with a distance of 267.2?mm to the tibial plateau showed a good agreement with the patient injury data. Conclusions. Overall results indicated the reasonability of the simulation method to determine loading environments and injury characteristics which the patient experienced with knee endoprosthesis during walking.
机译:背景和目标。在膝盖周围围绕骨肿瘤的广泛切除后进行共同的重建程序是内置假体膝关节置换。本研究的目的是探讨患者在行走期间患者骨折后患者的特征。方法。通过CT扫描建立了股骨假体 - 胫骨复合物的特异性有限元模型。为了获得其生理学上的逼真的装载环境,实施了肌肉骨骼逆动态分析。然后将提取的肌肉力和接地力施用于有限元模型,以研究步态循环的各个阶段的骨应力分布。结果。每个阶段的最大股骨应力在步态周期中的33.14 mPa变化为33.14至70.61℃。与胫骨平台距离的应力集中位置为267.2ΩΩmm与患者损伤数据吻合良好。结论。总体结果表明了模拟方法确定患者在行走期间膝关节内置经历的患者的装载环境和损伤特征。

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