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首页> 外文期刊>Veterinary and Comparative Orthopaedics and Traumatology >Effect of stem flattening on rotational stability of a canine femoral total hip component in polymethylmethacrylate cement
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Effect of stem flattening on rotational stability of a canine femoral total hip component in polymethylmethacrylate cement

机译:扁平化对聚甲基丙烯酸甲酯水泥中犬股总髋关节旋转稳定性的影响

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摘要

This study was designed to determine the effect of flattening the lateral aspect of a commercially available femoral prosthesis on its rotational stability in polymethylmethacrylate cement. Five standard design and five laterally flattened size 7 canine femoral components were evaluated. The stems were embedded in commercially available medical grade polymethylmethacrylate and rotated 15degrees while torque and angular displacement data were collected. The stiffness, yield and failure variables were compared between commercial and flattened stems. None of the mechanical testing variables were statistically different between commercial and flattened stems although all of the mean values for flattened stems were higher (1-30%) than mean values for commercial stems. Rotational stability of a canine total hip replacement femoral component was not significantly enhanced by the flattened component design modification evaluated by the testing protocol in this study.
机译:本研究旨在确定扁平化市售股骨假体的侧面对其在聚甲基丙烯酸甲酯水泥中的旋转稳定性的影响。评估了五个标准设计和五个侧面扁平的7号犬股骨组件。将茎杆嵌入可商购的医用级聚甲基丙烯酸甲酯,旋转15度,同时收集扭矩和角位移数据。比较了商业和扁平茎的刚度,屈服和破坏变量。尽管扁平茎的所有平均值均比商用茎的平均值高(1-30%),但机械测试变量在商用和扁平茎之间均无统计学差异。通过这项研究中的测试方案评估的扁平化组件设计修改并未明显提高犬全髋关节置换股骨组件的旋转稳定性。

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