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首页> 外文期刊>Journal of biomechanical engineering. >Investigation of Correction Trajectory Considering Bone End-Plane Orientation and the Shortest Growth Path
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Investigation of Correction Trajectory Considering Bone End-Plane Orientation and the Shortest Growth Path

机译:考虑骨端平面取向和最短增长路径的校正轨迹的研究

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摘要

External fixators are widely used in orthopedics for the purposes of fracture reduction and bone deformity correction. Since there is nonlinear mapping between the joint and operation spaces of the external fixator, bone correction trajectories achieved by equally adjusting the length of the struts in the joint space are usually not the trajectories that clinicians expect. Based on two different adjustment strategies, a new strategy considering bone end-plane orientation and the shortest growth path is proposed to plan the position and orientation of the distal bone end, which is named joint adjustment for equal bone distraction. By proposing the inverse and forward kinematic solutions of an Ortho-SUV external fixator, correction trajectories with three different adjustment strategies are generated and compared, and the bone shapes for each strategy are modeled. The results obtained by comparative analysis indicate that a smooth and uniformly spaced linear trajectory can be acquired using the new adjustment strategy, which can avoid bone end interference and maintain an optimal distraction rate of 1.03?mm/day, with only a 3% error compared with 1?mm/day. The new strategy can perform multiplane corrections simultaneously and is beneficial for stimulating the growth of new bone tissue.
机译:外部固定器广泛用于骨科用于骨折和骨畸形校正的目的。由于外部固定器的接头和操作空间之间存在非线性映射,因此通过同等地调节关节空间中支柱的长度来实现的骨校正轨迹通常不是临床人员期望的轨迹。基于两种不同的调整策略,提出了一种考虑骨端平面取向和最短增长路径的新策略来规划远端骨骼端的位置和取向,其被命名为相等骨干扰的关节调整。通过提出矫正器外固定器的逆向和向前运动液,产生并比较具有三种不同调整策略的校正轨迹,并为每个策略进行建模。通过比较分析获得的结果表明,可以使用新的调整策略来获取光滑且均匀间隔的线性轨迹,这可以避免骨骼结束干扰并保持最佳分散率为1.03Ω/天,只有3%的错误1?mm /天。新策略可以同时进行乘法校正,有利于刺激新骨组织的生长。

著录项

  • 来源
  • 作者单位

    College of Mechanical Engineering and Applied Electronics Technology Beijing University of Technology;

    College of Mechanical Engineering and Applied Electronics Technology Beijing University of Technology;

    College of Mechanical Engineering and Applied Electronics Technology Beijing University of Technology;

    College of Mechanical Engineering and Applied Electronics Technology Beijing University of Technology;

    National Research Center for Rehabilitation Technical Aids;

    National Research Center for Rehabilitation Technical Aids;

    College of Mechanical Engineering and Applied Electronics Technology Beijing University of Technology;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;
  • 关键词

    Kinematics; Trajectories (Physics); Shapes;

    机译:运动学;轨迹(物理);形状;

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