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首页> 外文期刊>Journal of Biomechanics >Cancellous and cortical morselized allograft in revision total hip replacement: A biomechanical study of implant stability.
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Cancellous and cortical morselized allograft in revision total hip replacement: A biomechanical study of implant stability.

机译:翻修全髋关节置换中的松质和皮质开裂的同种异体移植物:植入物稳定性的生物力学研究。

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摘要

To restore femoral intramedullary bone stock loss in revision surgery of failed total hip arthroplasties, impacted morselized cancellous allograft is recommended.This study investigated the mechanical properties of both impacted cortical (group A) and cancellous (group B) morselized bone graft for reconstruction of femoral bones.Ten matched pairs of fresh frozen human femora were prepared by over-reaming to create a smooth-walled cortical shell. Each pair had one cortical and one cancellous impacted morselized allograft and cement. Stem subsidence was evaluated by a cyclic axial load, which was applied by a servohydraulic test. The stem subsidence was measured for initial subsidence (subsidence at the first 1000 cycles), the total axial subsidence (subsidence at the end of cycles under load) and the final axial subsidence (subsidence after the unloading phase).Torque test was measured by torsional loads through the prosthetic femoral heads.TOTAL AXIAL SUBSIDENCE WAS SIGNIFICANTLY HIGHER IN GROUP B (MEAN: 1.32+/-0.32mm) compared to group A (mean: 0.94+/-0.26mm) (P<0.01).There was no significant difference between the two groups in terms of initial subsidence (P=0.09) and final axial subsidence.The mean maximum torque before failure was 39.5+/-22.2N-m for the cortical morselized allograft and 32.5+/-18.1N-m for cancellous.We concluded that impacted morselized cortical bone graft used for reconstruction of contained femoral bone loss in revision hip arthroplasy, may reduce the stem subsidence. Further animal experimentation for mechanical and histological evaluation of in vivo application is warranted.
机译:为了在全髋关节置换失败的翻修手术中恢复股骨髓内骨质流失,建议使用撞击的碎石化松质同种异体移植物。本研究调查了撞击的皮质(A组)和松散的(B组)碎骨化的股骨骨在重建股骨中的力学性能。通过过度种植来制作十对匹配的新鲜冷冻人股骨,以创建光滑壁的皮层外壳。每对有一个皮层和一个松散的杂碎的同种异体移植物和水泥。通过循环轴向载荷评估茎杆沉陷,该载荷通过伺服液压试验施加。测量杆下沉的初始沉陷(前1000个循环的沉陷),总轴向沉陷(载荷作用下循环结束时的沉陷)和最终轴向沉陷(卸载阶段后的沉陷),通过扭转测量扭矩测试。 B组的平均轴向沉降明显高于A组(平均:0.94 +/- 0.26mm)(P <0.01),但假体股骨头的轴向沉降明显高于A组(平均:0.94 +/- 0.26mm)(P <0.01)。两组在初始下沉(P = 0.09)和最终轴向下沉方面的差异。皮层有齿的同种异体移植物的失败前平均最大扭矩为39.5 +/- 22.2Nm,而松质的平均最大扭矩为32.5 +/- 18.1Nm。这影响了用于在翻修髋关节置换术中重建股骨丢失的杂碎皮质骨移植,可能会减少茎下陷。必须进行进一步的动物实验,以进行体内应用的机械和组织学评估。

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