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首页> 外文期刊>Journal of Biomechanics >Finite element simulations of a focal knee resurfacing implant applied to localized cartilage defects in a sheep model.
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Finite element simulations of a focal knee resurfacing implant applied to localized cartilage defects in a sheep model.

机译:局灶性膝关节表面置换植入物应用于绵羊模型中局部软骨缺损的有限元模拟。

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摘要

Articular resurfacing metal implants have recently been tested in animal models to treat full thickness localized articular cartilage defects, showing promising results. However, the mechanical behavior of cartilage surrounding the metal implant has not been studied yet as it is technically challenging to measure in vivo contact areas, pressures, stresses and deformations from the metal implant. Therefore, we implemented a detailed numerical finite element model by approximating one of the condyles of the sheep tibiofemoral joint and created a defect of specific size to accommodate the implant. Using this model, the mechanical behavior of the surrounding of metal implant was studied. The model showed that the metal implant plays a significant role in the force transmission. Two types of profiles were investigated for metal implant. An implant with a double-curved profile, i.e., a profile fully congruent with the articular surfaces in the knee, gives lower contact pressures and stresses at the rim of the defect than the implant with unicurved spherical profile. The implant should be placed at a certain distance into the cartilage to avoid damage to opposing biological surface. Too deep positions, however, lead to high shear stresses in the cartilage edges around the implant. Mechanical sealing was achieved with a wedge shape of the implant, also useful for biochemical sealing of cartilage edges at the defect.
机译:最近已在动物模型中对关节表面置换金属植入物进行了测试,以治疗全厚度的局部关节软骨缺损,显示出令人鼓舞的结果。然而,尚未研究围绕金属植入物的软骨的机械行为,因为测量金属植入物的体内接触面积,压力,应力和变形在技术上具有挑战性。因此,我们通过近似羊胫股关节con的一个implemented来实现详细的数值有限元模型,并创建了特定尺寸的缺损以适应植入物。使用该模型,研究了金属植入物周围的机械行为。该模型表明,金属植入物在力传递中起着重要作用。对金属植入物研究了两种类型的轮廓。具有双弯曲轮廓的植入物,即与膝盖的关节表面完全一致的轮廓,与具有单弯曲球形轮廓的植入物相比,在缺损边缘处的接触压力和应力较低。植入物应放置在距软骨一定距离的位置,以免损坏相对的生物表面。但是,过深的位置会导致植入物周围的软骨边缘产生高剪切应力。用植入物的楔形实现机械密封,这也可用于缺陷处软骨边缘的生化密封。

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