弹性牵引法在骨盆复位术中的实验研究及有限元模拟分析

Jixuan Liu, Ke Xu, Chunpeng Zhao, Gang Zhu, Yu Wang, Xinbao Wu, Xu Sun, Wei Tian
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引用次数: 3

摘要

骨盆骨折是创伤骨科中最复杂的骨折。巨大的肌肉阻力是未来医师或机器人辅助盆腔复位手术的主要困难。在骨盆骨折手术中,通常采用牵引法来减小复位力,以对抗较大的肌肉阻力。我们提出了一种弹性牵引方法,以提供骨盆复位的灵活性,并减少复位骨盆所需的力。根据本文的实验结果,手术中采用弹性牵引方法时,复位力可降低56.2%。建立了基于弹簧约束的骨盆骨折复位肌肉骨骼模型,并通过实验数据进行了验证。通过仿真模型,研究了弹簧刚度对弹性牵引性能的影响。仿真结果表明,弹簧刚度越小,减振力越小。此外,我们比较了k-钢丝在单个k-钢丝路径保持过程中施加到k-钢丝上的最大应力和还原力。我们认为克氏针1通路是骨盆复位的最佳途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Experiment Investigation and FE Simulation Analysis on Elastic Traction Method Applied in the Pelvic Reduction
Pelvic fracture is the most complicated fracture in traumatic orthopedics. Tremendous muscle resistance is the main difficulty in carrying out pelvic reduction for the physician or robot-assisted reduction surgery in the future. During pelvic fracture surgery, the traction method is commonly utilized to reduce the reduction force against the sizeable muscle resistance. We proposed an elastic traction method to provide flexibility in the pelvic reduction and reduce the force needed to reset the pelvic. According to the experimental results in this paper, when adopting the elastic traction method in surgery, the reduction force can be reduced up to 56.2%. A musculoskeletal model of pelvic fracture reduction based on spring constraints was also established and verified by the experimental data. Through the simulation model, we investigated the influences of spring stiffness on the performance of elastic traction. The simulation results show that the minor spring stiffness is, the smaller the reduction force would be. In addition, we compared the maximum stress and reduction force applied on k-wire during a single K-wire pathway holding to complete reduction. We consider that the Kirschner pin 1 pathway is the optimal pathway in pelvic reduction.
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