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A Biomechanical Study Comparing Helical Blade with Screw Design for Sliding Hip Fixations of Unstable Intertrochanteric Fractures

机译:螺旋刀片与螺钉设计比较不稳定转子间骨折滑动髋关节固定的生物力学研究

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摘要

Dynamic hip screw (DHS) is a well-established conventional implant for treating intertrochanteric fracture. However, revision surgery sometimes still occurs due to the cutting out of implants. A helical blade instead of threaded screw (DHS blade) was designed to improve the fixation power of the osteoporotic intertrochanteric fracture. In this study, the biomechanical properties of DHS blade compared to the conventional DHS were evaluated using an unstable AO/OTA 31-A2 intertrochanteric fracture model. Fifty synthetic proximal femoral bone models with such configuration were fixed with DHS and DHS blade in five different positions: centre-centre (CC), superior-centre (SC), inferior-center (IC), centre-anterior (CA), and centre-posterior (CP). All models had undergone mechanical compression test, and the vertical and rotational displacements were recorded. The results showed that DHS blade had less vertical or rotational displacement than the conventional DHS in CC, CA, and IC positions. The greatest vertical and rotational displacements were found at CP position in both groups. Overall speaking, DHS blade was superior in resisting vertical or rotational displacement in comparison to conventional DHS, and the centre-posterior position had the poorest performance in both groups.
机译:动力髋螺钉(DHS)是用于治疗股骨转子间骨折的公认的传统植入物。但是,由于切除了植入物,有时仍会进行翻修手术。设计了螺旋刀片而不是螺纹螺钉(DHS刀片)来提高骨质疏松性转子间骨折的固定能力。在这项研究中,使用不稳定的AO / OTA 31-A2转子间骨折模型评估了DHS刀片与传统DHS相比的生物力学性能。用DHS和DHS刀片在五个不同位置固定了50个具有这种配置的合成股骨近端骨模型:中心(CC),中心(SC),中心(IC),中心前(CA)和后中央(CP)。所有模型都经过了机械压缩测试,并记录了垂直和旋转位移。结果表明,在CC,CA和IC位置,DHS叶片的垂直或旋转位移均小于常规DHS。两组的CP位置都有最大的垂直和旋转位移。总体而言,与传统的DHS相比,DHS刀片在抵抗垂直或旋转位移方面表现出色,并且两组的中后部位置性能最差。

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