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Comparative biomechanical study of reversed less invasive stabilization system and proximal femoral nail antirotation for unstable intertrochanteric fractures

机译:反向微创稳定系统和股骨近端钉防旋转治疗不稳定型转子间骨折的对比生物力学研究

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摘要

Objective Unstable intertrochanteric fractures (ITFs) are mostly treated by proximal femoral nail antirotation (PFNA),Inter-Tan,Asian Hip,and other new internal fixation devices.But for complex unstable fractures,such as crushed lateral wall of the greater trochanter,the loss of fixation point on lateral wall slightly reduces the fixing effect.This study aimed to compare the biomechanical strengths between reversed less invasive stabilization system (LISS) and PFNA for treatment of unstable ITFs.Methods Forty synthetic femurs were used to simulate unstable ITFs in vitro and were fixed using the reversed LISS or PFNA.These fractures were divided into two groups depending on whether the lateral wall of the greater trochanter is intact or not (AO classification:31-A2.3 and 31-A3.3,respectively).The load-displacement of femur,stiffness,ultimate load,and cyclic fatigue resistance were detected using an incremental load test and a dynamic fatigue test through an MTS 858 test system.Results For both 31-A2.3 and 31-A3.3,the vertical sinking displacement (VSD) of the femoral head under 500 N load was insignificantly smaller after treatment with reversed LISS than with PFNA,and when the displacement was 5 mm,the femoral head bore insignificantly greater load.The fixation with reversed LISS resulted in greater axial stiffness of the femur but smaller ultimate load.During the same cycle in the dynamic fatigue test,the VSD was insignificantly smaller with the fixation of reversed LISS.Conclusion Reversed LISS and PFNA have similar biomechanical strength for unstable ITFs.This conclusion should be supported by additional large-size research on basic biomechanics and clinical application.This is the first comparative biomechanical study comparing reversed LISS and PFNA for unstable ITFs.
机译:目的不稳定的股骨转子间骨折(ITF)大多采用股骨近端抗旋转钉(PFNA),椎间,亚洲髋关节及其他新的内固定装置进行治疗,但对于复杂的不稳定骨折,例如大转子粗碎的侧壁,本研究旨在比较反向侵入性微创稳定系统(LISS)和PFNA在治疗不稳定ITF中的生物力学强度。方法采用40个合成股骨在体外模拟不稳定ITF。根据大转子的侧壁是否完整,将这些骨折分为两组(AO分类:31-A2.3和31-A3.3)。使用增量负载测试和通过MTS 858测试系统进行的动态疲劳测试来检测股骨的负载位移,刚度,极限负载和耐循环疲劳性。结果F或同时使用31-A2.3和31-A3.3,经反向LISS治疗后,股骨头在500 N载荷下的垂直下沉位移(VSD)明显小于PFNA,当位移为5 mm时,股骨头孔的负荷不明显。反向LISS固定导致股骨的轴向刚度增大,但最终载荷较小。在动态疲劳试验的同一周期中,反向LISS固定可使VSD较小。 PFNA和PFNA在不稳定ITF中具有相似的生物力学强度。这一结论应得到有关基础生物力学和临床应用的其他大型研究的支持。这是首次比较反向LISS和PFNA在不稳定ITF中的比较生物力学研究。

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  • 来源
    《中华医学杂志(英文版)》 |2014年第23期|4124-4129|共6页
  • 作者单位

    Department of Orthopedics, China-Japan Friendship Hospital, Beijing 100029, China;

    Department of Graduate School, Beijing University of Chinese Medicine, Beijing 100029, China;

    Department of Orthopedics, China-Japan Friendship Hospital, Beijing 100029, China;

    Department of Orthopedics, China-Japan Friendship Hospital, Beijing 100029, China;

    Department of Orthopedics, Ji Shui Tan Hospital, Beijing 100035, China;

    Department of Orthopedics, Ji Shui Tan Hospital, Beijing 100035, China;

    Department of Graduate School, Beijing University of Chinese Medicine, Beijing 100029, China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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