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翼状增强可减少股骨头从动力髋螺钉上脱出。

Wing-augmentation reduces femoral head cutting out of dynamic hip screw.

作者信息

Chen Chih-Yu, Huang Shu-Wei, Sun Jui-Sheng, Lin Shin-Yiing, Yu Chih-Sheng, Pan Hsu-Pin, Lin Ping-Hung, Hsieh Fan-Chun, Tsuang Yang-Hwei, Lin Feng-Huei, Yang Rong-Sen, Cheng Cheng-Kung

机构信息

Department of Biomedical Engineering, National Yang-Ming University, Linong St, Beitou District, Taipei City, Taiwan; Department of Orthopedics, Shuang Ho Hospital, Taipei Medical University, Wuxing St, Xinyi District, Taipei City, Taiwan.

Institute of Biomedical Engineering, National Taiwan University, No. 1, Section 4, Roosevelt Rd, Da'an District, Taipei City, Taiwan.

出版信息

Med Eng Phys. 2017 Jun;44:73-78. doi: 10.1016/j.medengphy.2017.02.015. Epub 2017 Mar 18.

Abstract

The dynamic hip screw (DHS) is commonly used in the treatment of femoral intertrochanteric fracture with high satisfactory results. However, post-operative failure does occur and result in poor prognosis. The most common failure is femoral head varus collapse, followed by lag screw cut-out through the femoral head. In this study, a novel-designed DHS with two supplemental horizontal blades was used to improve the fixation stability. In this study, nine convention DHS and 9 Orthopaedic Device Research Center (ODRC) DHSs were tested in this study. Each implant was fixed into cellular polyurethane rigid foam as a surrogate of osteoporotic femoral head. Under biaxial rocking motion, all constructs were loaded to failure point (12mm axial displacement) or up to 20,000 cycles of 1.45kN peak magnitude were achieved, whichever occurred first. The migration kinematics was continuously monitored and recorded. The final tip-to-apex distance, rotational angle and varus deformation were also recorded. The results showed that the ODRC DHS sustained significantly more loading cycles and exhibited less axial migration in comparison to the conventional DHS. The ODRC DHS showed a significantly smaller bending strain and larger torsional strain compared to the conventional DHS. The changes in tip-to-apex distance (TAD), post-study varus angle, post-study rotational angle of the ODRC DHS were all significantly less than that of the conventional DHS (p < 0.05). We concluded that the ODRC DHS augmented with two horizontal wings would increase the bone-implant interface contact surface, dissipate the load to the screw itself, which improves the migration resistance and increases the anti-rotational implant effect. In conclusion, the proposed ODRC DHS demonstrated significantly better migration resistance and anti-rotational effect in comparison to the conventional DHS construct.

摘要

动力髋螺钉(DHS)常用于治疗股骨转子间骨折,效果令人满意。然而,术后失败确实会发生,并导致预后不良。最常见的失败是股骨头内翻塌陷,其次是拉力螺钉穿出股骨头。在本研究中,使用一种新设计的带有两个补充水平刀片的DHS来提高固定稳定性。在本研究中,测试了9枚传统DHS和9枚骨科器械研究中心(ODRC)的DHS。将每个植入物固定在多孔聚氨酯硬质泡沫中,作为骨质疏松股骨头的替代物。在双轴摇摆运动下,所有结构加载至失效点(轴向位移12mm)或达到1.45kN峰值幅度的20000次循环,以先发生者为准。连续监测并记录移位运动学。还记录了最终的尖顶距、旋转角度和内翻变形。结果表明,与传统DHS相比,ODRC DHS承受的加载循环显著更多,轴向移位更少。与传统DHS相比,ODRC DHS的弯曲应变显著更小,扭转应变更大。ODRC DHS的尖顶距(TAD)、研究后的内翻角度、研究后的旋转角度变化均显著小于传统DHS(p<0.05)。我们得出结论,带有两个水平翼的ODRC DHS会增加骨-植入物界面接触面积,将负荷分散到螺钉本身,从而提高抗移位能力并增强植入物的抗旋转效果。总之,与传统DHS结构相比,所提出的ODRC DHS表现出显著更好的抗移位能力和抗旋转效果。

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