首页> 外文期刊>Journal of biomechanical engineering. >Validation of a New Method for Finding the Rotational Axes of the Knee Using Both Marker-Based Roentgen Stereophotogrammetric Analysis and 3D Video-Based Motion Analysis for Kinematic Measurements
【24h】

Validation of a New Method for Finding the Rotational Axes of the Knee Using Both Marker-Based Roentgen Stereophotogrammetric Analysis and 3D Video-Based Motion Analysis for Kinematic Measurements

机译:使用基于标记的X射线体位摄影测量法和基于3D视频的运动学测量进行膝关节旋转轴寻找新方法的验证

获取原文
获取原文并翻译 | 示例
       

摘要

In a previous paper, we reported the virtual axis finder, which is a new method for finding the rotational axes of the knee. The virtual axis finder was validated through simulations that were subject to limitations. Hence, the objective of the present study was to perform a mechanical validation with two measurement modalities: 3D video-based motion analysis and marker-based roentgen stereophotogrammetric analysis (RSA). A two rotational axis mechanism was developed, which simulated internal-external (or longitudinal) and flexion-extension (FE) rotations. The actual axes of rotation were known with respect to motion analysis and RSA markers within ±0.0006 deg and ±0.036 mm and ±0.0001 deg and ±0.016 mm, respectively. The orientation and position root mean squared errors for identifying the longitudinal rotation (LR) and FE axes with video-based motion analysis (0.26 deg, 0.28 m, 0.36 deg, and 0.25 mm, respectively) were smaller than with RSA (1.04 deg, 0.84 mm, 0.82 deg, and 0.32 mm, respectively). The random error or precision in the orientation and position was significantly better (p =0.01 and p = 0.02, respectively) in identifying the LR axis with video-based motion analysis (0.23 deg and 0.24 mm) than with RSA (0.95 deg and 0.76 mm). There was no significant difference in the bias errors between measurement modalities. In comparing the mechanical validations to virtual validations, the virtual validations produced comparable errors to those of the mechanical validation. The only significant difference between the errors of the mechanical and virtual validations was the precision in the position of the LR axis while simulating video-based motion analysis (0.24 mm and 0.78 mm, p = 0.019). These results indicate that video-based motion analysis with the equipment used in this study is the superior measurement modality for use with the virtual axis finder but both measurement modalities produce satisfactory results. The lack of significant differences between validation techniques suggests that the virtual sensitivity analysis previously performed was appropriately modeled. Thus, the virtual axis finder can be applied with a thorough understanding of its errors in a variety of test conditions.
机译:在先前的论文中,我们报道了虚拟轴查找器,这是一种用于查找膝盖旋转轴的新方法。虚拟轴查找器已通过受限的模拟进行了验证。因此,本研究的目的是通过两种测量方式进行机械验证:基于3D视频的运动分析和基于标记的伦氏立体摄影测量分析(RSA)。开发了两个旋转轴机制,该机制模拟了内部(外部)(或纵向)和屈伸(FE)旋转。关于运动分析和RSA标记的实际旋转轴是已知的,分别在±0.0006度和±0.036毫米,±0.0001度和±0.016毫米之内。与基于视频的运动分析(分别为0.26度,0.28 m,0.36度和0.25毫米)一起识别纵向旋转(LR)和FE轴的方向和位置均方根误差均小于RSA(1.04度,分别为0.84毫米,0.82度和0.32毫米)。在基于视频的运动分析(0.23度和0.24毫米)中确定LR轴时,方向和位置的随机误差或精度明显好于p(分别为p = 0.01和p = 0.02)(比RSA为0.95度和0.76)毫米)。测量方式之间的偏差误差没有显着差异。在将机械验证与虚拟验证进行比较时,虚拟验证产生的误差与机械验证的误差相当。机械验证和虚拟验证误差之间的唯一显着差异是,在模拟基于视频的运动分析时,LR轴的位置精度(0.24 mm和0.78 mm,p = 0.019)。这些结果表明,使用本研究中的设备进行的基于视频的运动分析是与虚拟轴查找器一起使用的优越的测量方式,但是两种测量方式都能产生令人满意的结果。验证技术之间没有显着差异,这表明先前执行的虚拟灵敏度分析已适当建模。因此,可以在全面了解虚拟轴查找器在各种测试条件下的错误的情况下应用它。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号