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Share Relationship Adjustment of Femoral Head Necrosis Through Biomaterial Allograft Bone

机译:生物材料同种异体骨对股骨头坏死的份额关系调整

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摘要

Allogeneic bone grafting, as an alternative to autograft, is an effective hip preserving method that can be employed to delay or arrest the progression of the femoral head necrosis (FHN), and it can help to obtain the load balancing between subchondral cortical and cancellous bone, strengthen structural mechanics of the femoral head and provide biology repair materials for bone regeneration during bone healing. However, these conclusions have been drawn primarily from observational clinical experience and lack of biomechanical basis. The purpose of this study was to evaluate the efficacy of biomaterial allograft bone for the treatment of FHN using computational biomechanical models. The results showed that allogeneic bone grafting reduced the collapse risk of the necrotic femoral head and recovered the load share ratio between the cortical bone and trabeculae in weight-bearing areas. This study provided a considerable direction using computational biomechanical technology for orthopedic research and specific biomechanical evidence for the use of allogeneic bone grafting in clinics.
机译:同种异体骨移植是自体移植的一种替代方法,是一种有效的髋关节保留方法,可用于延迟或阻止股骨头坏死(FHN)的进展,它可以帮助实现软骨下皮质和松质骨之间的负载平衡,加强股骨头的结构力学,并为骨愈合过程中的骨再生提供生物学修复材料。但是,这些结论主要是从观察临床经验和缺乏生物力学基础得出的。这项研究的目的是使用计算的生物力学模型评估生物材料同种异体骨治疗FHN的疗效。结果表明,同种异体骨移植降低了坏死股骨头的塌陷风险,并恢复了负重区域的皮质骨与小梁之间的负荷分担比。这项研究提供了使用计算生物力学技术进行骨科研究的重要方向,并为同种异体骨移植在临床中的使用提供了具体的生物力学证据。

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