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首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >The effects of femoral neck cut, cable tension, and muscles forces on the greater trochanter fixation.
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The effects of femoral neck cut, cable tension, and muscles forces on the greater trochanter fixation.

机译:股骨颈切开,电缆张力和肌肉力量对大转子固定的影响。

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摘要

Greater trochanter (GT) stabilization techniques following a fracture or an osteotomy are still showing high levels of postoperative complications. Understanding the effect of femoral neck cut placement, cable tension and muscles forces on GT fragment displacements could help surgeons optimize their techniques. A 3D finite element model has been developed to evaluate, through a statistical experimental design, the impact of the above variables on the GT fragment gap and sliding displacements. Muscles forces were simulating typical daily activities. Stresses were also investigated. The femoral neck cut placement had the most significant effect on the fragment displacement. Lowering it by 5 mm increased the gap and sliding fragment displacements by 288 and 128 %, respectively. Excessive cable tightening provided no significant reduction in fragment displacement. Muscle activities increased the gap and the sliding displacements for all muscle configurations. The maximum total displacement of 0.41 mm was present with a 10 mm femoral neck cut, a cable tension of 178 N, and stair climbing. Caution must be used not to over tighten the cables as the potential damage caused by the increased stress is more significant than any reduction in fragment displacement. Furthermore, preservation of the contact area is important for GT stabilization.
机译:骨折或截骨后更大的转子(GT)稳定技术仍显示出高水平的术后并发症。了解股骨颈切开位置,线缆张力和肌肉力量对GT碎片移位的影响可以帮助外科医生优化其技术。已经开发了3D有限元模型,以通过统计实验设计评估上述变量对GT片段间隙和滑动位移的影响。肌肉力量正在模拟典型的日常活动。还研究了压力。股骨颈切开位置对碎片移位影响最大。将其降低5 mm,可使间隙和滑动碎片位移分别增加288%和128%。过度拧紧电缆不会显着减少碎片位移。肌肉活动增加了所有肌肉结构的间隙和滑动位移。股骨颈切开10 mm,缆索张力178 N,爬楼梯,最大总位移为0.41 mm。必须注意不要过度拧紧电缆,因为由应力增加引起的潜在损坏比减少碎片位移更重要。此外,保持接触面积对于GT的稳定很重要。

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