[不同型号股骨颈假体植入前后人体股骨的光弹性应力分析]。

G Wieners, M Pech, F Streitparth, V Jansson, W Plitz
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引用次数: 3

摘要

目的:本研究的目的是利用光弹性应力分析检测不同股骨颈假体植入后股骨近端危险区域。方法:以12对人股骨为检测材料。在无骨水泥植入的3种股骨颈假体模型植入前后,在负荷逐步增加至体重的4倍的情况下,对其应力分布进行分析。“CUT”和“雪茄”模型涂有三脚架结构。“雪茄”模型有一个侧向推力板。“CUT”模型的外侧端是弯曲的,这一端与外侧皮质相连。第三种模型,“撕裂假体”有两层旋转稳定性。随后,在1000 +/- 700 N的交替重量负荷下,观察植入假体在股骨颈的微运动。结果:雪茄假体的应力分布变化最大,因为外侧推力板集中在外侧镗上。在骨切开术区域,雪茄的应变增加高达1440微米/米,肋骨假体的应变增加高达1000微米/米。除了应力值略有增加(720微米/米)外,CUT假体植入后的应力模式非常相似。只有雪茄假体的微运动测量值低于可能的骨融合临界值,平均值为134微米/米。结论:CUT假体植入后的应力形态与介入前的应力分布最为相似。正因为如此,可以预期骨修饰将停留在低水平。骨整合的问题只能在长期的体内研究中得到回答。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Photoelastic stress analysis of human femurs before and after implantation of different models of femur neck prostheses].

Aim: The aim of this study was the detection of areas at risk at the proximal femur after implantation of different femur neck prostheses using the photoelastic stress analysis.

Methods: Twelve pairs of human femurs were used as examination material. The analysis of the stress pattern was done with a stepwise increasing load up to the quadruple of body weight before and after implantation of three models of femur neck prostheses which were implanted cementless. The "CUT" and "Cigar" models are coated with a tripod structure. The "Cigar" model has a lateral thrust plate. The lateral end of the "CUT" model is curved and this end is attached to the lateral corticalis. The third model, the "rip prosthesis" has two layers for rotational stability. Subsequently, the micromotions of the implanted prosthesis in the femural neck were examined with alternating weight loads (1000 +/- 700 N).

Results: The Cigar prosthesis showed the most changes of stress distribution because of the lateral thrust plate with concentration of isochromatic lines to the lateral boring. In the region of the oseotomy an increase of strain up 1440 microm/m could be detected for the Cigar and up to 1000 microm/m for the rib prosthesis. The stress pattern after implantation of the CUT prosthesis remained very similar apart from a slight increase of stress values (720 microm/m). Only for the Cigar prostheses were the measured micromotions below the critical value for a possible osteointegration with a mean value of 134 microm/m.

Conclusion: The stress pattern after implantation of the CUT prosthesis remained most similar to the preinterventional stress distribution. Because of this, it is to be expected that the osseous modification would stay at a low level. The question of osteointegration can only be answered in long-term in-vivo studies.

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