首页> 外文期刊>Journal of Biomechanics >Contact stress distributions on the femoral head of the emu (Dromaius novaehollandiae).
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Contact stress distributions on the femoral head of the emu (Dromaius novaehollandiae).

机译:the股骨头(Dromaius novaehollandiae)上的接触应力分布。

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摘要

Osteonecrosis of the femoral head remains a challenging orthopaedic problem. The disease frequently progresses to femoral head collapse, leading to debilitating osteoarthritis in the affected hip(s). Since a major goal of pre-collapse interventions is to forestall the need for hip arthroplasty, it is important that any animal models used to develop or study such interventions also have a natural history of progression to femoral head collapse. The emu (Dromaius novaehollandiae), a large flightless bird native to Australia, consistently progresses to femoral head collapse when osteonecrosis is experimentally induced cryogenically. Full biomechanical characterization of the demands this animal places on its hip is an important consideration in future usage of this model. This study reports in vitro measurement of the contact stress distributions on the emu femoral head during stance phase of the gait cycle, using Fuji pressure-sensitive film. Applied hip loadings were based upon ground reaction forces and hip flexion angles recorded in vivo. The contact stress data showed reasonable homology with the human hip, both in terms of stress magnitude and sites of habitual loading on the femoral head.
机译:股骨头坏死仍然是一个具有挑战性的骨科问题。该病常发展为股骨头塌陷,导致患处髋关节衰弱性骨关节炎。由于塌陷前干预的主要目标是避免对髋关节置换术的需求,因此重要的是,用于开发或研究此类干预的任何动物模型也应具有自然发展为股骨头塌陷的历史。 mu(Dromaius novaehollandiae)是一种原产于澳大利亚的大型不会飞的鸟,在实验性地通过低温诱发骨坏死时,一直会发展为股骨头塌陷。对该动物对臀部提出的要求进行全面的生物力学表征是该模型未来使用的重要考虑因素。这项研究报道了使用富士压敏胶片体外测量步态周期站立阶段in股骨头上的接触应力分布。施加的髋部载荷是基于体内记录的地面反作用力和髋部屈曲角度。接触应力数据显示在应力大小和股骨头惯性负荷部位方面与人的髋关节具有合理的同源性。

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