The Analysis of Biomechanical Properties of Proximal Femur after Implant Removal

  • Yang, Jae Hyuk
  • Jung, Tae Gon
  • Honnurappa, Arjun Rupanagudi
  • Cha, Jae Min
  • Ham, Chang Hwa
  • ... Suh, Seung Woo
  • 외 1명
Citations

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11
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14

초록

Introduction. To compare the biomechanical stability of the femur following the removal of proximal femoral nail antirotation (PFNA-II) and dynamic hip screw (DHS). Material andMethods. 56 paired cadaveric femurs were used as experimental and control groups. In the experimental group, PFNA-II and DHS were randomly inserted into femurs on both sides and then removed. Thereafter, compression load was applied until fracture occurred; biomechanical stability of the femurs and associated fracture patterns were studied. Results. The ultimate load and stiffness of the control group were 6227.8 +/- 1694.1N and 990.5 +/- 99.8 N/mm, respectively. These were significantly higher than experimental group (p = 0.014, <0.001) following the removal of PFNA-II (4085.6 +/- 1628.03N and 656.3 +/- 155.3 N/mm) and DHS (4001.9 +/- 1588.3N and 656.3 +/- 155.3 N/mm). No statistical differences in these values were found between the 2 device groups (p = 0.84, 0.71), regardless of age groups. However, fracture patterns were different between two devices, intertrochanteric and subtrochanteric fractures. Conclusions. Mechanical stability of the proximal femurs does not differ after the removal of 2 different of fixation devices regardless of the age. However, it was significantly lower compared to an intact femur. Different fracture patterns have been shown following the removal of different fixation devices as there are variations in the site of stress risers for individual implants.

키워드

DYNAMIC HIP SCREWNAIL ANTIROTATIONFEMORAL-NECKGAMMA-NAILFRACTURES
제목
The Analysis of Biomechanical Properties of Proximal Femur after Implant Removal
저자
Yang, Jae HyukJung, Tae GonHonnurappa, Arjun RupanagudiCha, Jae MinHam, Chang HwaKim, Tae YoonSuh, Seung Woo
DOI
10.1155/2016/4987831
발행일
2016
유형
Article
저널명
Applied Bionics and Biomechanics
2016