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Propagation of soft tissue artifacts to the center of rotation: A model for the correction of functional calibration techniques

机译:软组织伪影向旋转中心的传播:用于校正功能校准技术的模型

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摘要

This paper presents a mathematical model for the propagation of errors in body segment kinematics to the location of the center of rotation. Three functional calibration techniques, usually employed for the gleno-humeral joint, are studied: the methods based on the pivot of the instantaneous helical axis (PIHA) or the finite helical axis (PFHA), and the "symmetrical center of rotation estimation" (SCoRE). A procedure for correcting the effect of soft tissue artifacts is also proposed, based on the equations of those techniques and a model of the artifact, like the one that can be obtained by double calibration. An experiment with a mechanical analog was performed to validate the procedure and compare the performance of each technique. The raw error (between 57 and 68. mm) was reduced by a proportion of between 1:6 and less than 1:15, depending on the artifact model and the mathematical method. The best corrections were obtained by the SCoRE method. Some recommendations about the experimental setup for functional calibration techniques and the choice of a mathematical method are derived from theoretical considerations about the formulas and the results of the experiment.
机译:本文提出了一种数学模型,用于将身体运动学中的误差传播到旋转中心。研究了通常用于盂肱关节的三种功能校准技术:基于瞬时螺旋轴(PIHA)或有限螺旋轴(PFHA)的枢轴,以及“对称旋转中心估计”的方法(得分了)。还基于这些技术的方程式和伪影模型,提出了一种校正软组织伪影效果的过程,就像可以通过双重校准获得的模型一样。进行了机械模拟实验,以验证程序并比较每种技术的性能。根据工件模型和数学方法,原始误差(介于57和68. mm之间)减少了1:6至小于1:15的比例。最佳校正是通过SCoRE方法获得的。有关功能校准技术的实验设置和数学方法选择的一些建议是从有关公式和实验结果的理论考虑中得出的。

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