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Biomechanical simulation of healing process of fractured femoral shaft applied by composite intramedullary nails according to fracture configuration

机译:复合髓内钉根据骨折形态对股骨干骨折愈合过程的生物力学模拟

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摘要

Flexible composite implants are receiving increased attention in this modern era of orthopedics for the stabilization of long bone fractures because they facilitate tissue development in calluses. An endochondral ossification process involves generation of calluses, and it is well known that this significantly affects the stabilization and healing of the broken bones. Therefore, the exact configuration of callus formation is highly important for the accurate simulation of bone healing. In this study, finite element analysis was performed to estimate the external callus shape by using the rejection coefficient (RC) algorithm. Regarding the application of a fractured femur by an intramedullary (IM) nail, the bone healing simulation was conducted by employing the biphasic mechano-regulation algorithm according to the fracture type (transverse (0 degrees) and oblique (35 degrees)), fracture location (proximal, medial, and distal ends), and nail property. The simulation results revealed that a glass/polypropylene fabric composite (Twintex [0](2nT)) IM nail, which has the similar Young's modulus to the cortical bone, provided the most appropriate bio-mechanical environment for bone healing.
机译:柔性复合材料植入物在这个现代骨科时代已得到越来越多的关注,用于稳定长骨骨折,因为它们促进了老茧中的组织发育。软骨内骨化过程涉及愈伤组织的产生,众所周知,这显着影响骨折的稳定性和愈合。因此,愈伤组织形成的精确构型对于精确模拟骨愈合非常重要。在这项研究中,进行了有限元分析,以使用拒绝系数(RC)算法估计外部愈伤组织的形状。关于使用髓内钉(IM)施加股骨骨折,根据骨折类型(横向(0度)和斜向(35度)),骨折部位,采用双相机械调节算法进行骨愈合模拟(近端,内侧和远端)和指甲属性。仿真结果表明,玻璃/聚丙烯纤维复合材料(Twintex [0](2nT))IM钉具有与皮质骨相似的杨氏模量,为骨骼愈合提供了最合适的生物力学环境。

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