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Effect of Relative Marker Movement on the Calculation of the Foot Torsion Axis Using a Combined Cardan Angle and Helical Axis Approach

机译:相对标记运动对使用组合的心轴角度和螺旋轴法计算脚扭轴的计算

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The two main movements occurring between the forefoot and rearfoot segment of a human foot are flexion at the metatarsophalangeal joints and torsion in the midfoot. The location of the torsion axis within the foot is currently unknown. The purpose of this study was to develop a method based on Cardan angles and the finite helical axis approach to calculate the torsion axis without the effect of flexion. As the finite helical axis method is susceptible to error due to noise with small helical rotations, a minimal amount of rotation was defined in order to accurately determine the torsion axis location. Using simulation, the location of the axis based on data containing noise was compared to the axis location of data without noise with a one-samplet-test and Fisher's combined probability score. When using only data with helical rotation of seven degrees or more, the location of the torsion axis based on the data with noise was within 0.2 mm of the reference location. Therefore, the proposed method allowed an accurate calculation of the foot torsion axis location.
机译:在人脚的前脚和后脚段之间发生的两个主要运动在跖趾关节和中足的扭转方面是屈曲。脚内的扭转轴的位置目前未知。本研究的目的是开发一种基于载体角度的方法和有限螺旋轴方法来计算扭转轴而不屈曲的效果。由于有限螺旋轴方法由于具有小螺旋旋转的噪声而易于误差,因此定义了最小的旋转,以便精确地确定扭转轴位置。使用模拟,将基于包含噪声数据的轴的位置与数据的轴位置与无噪声的噪声定位进行比较,具有单模拟测试和Fisher的组合概率分数。仅使用螺旋旋转七度或更长时间的数据时,基于具有噪声的数据的扭转轴的位置在参考位置的0.2mm范围内。因此,所提出的方法允许精确计算脚扭转轴位置。

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