Lang Angelica E, Friesen Kenzie B
Canadian Centre for Health and Safety in Agriculture, College of Medicine, University of Saskatchewan, 104 Clinic Place, Saskatoon, SK, S7N 2Z4, Canada.
Med Biol Eng Comput. 2023 Nov;61(11):2963-2970. doi: 10.1007/s11517-023-02894-z. Epub 2023 Aug 3.
Humeral motion can be challenging to measure and analyze. Typically, Euler/Cardan sequences are used for humeral angle decomposition, but choice of rotation sequence has substantial effects on outcomes. A new method called True axial rotation calculation may be more precise. The objective of this study is to compare humeral axial rotation measured from two systems (optical motion capture and inertial measurement units (IMUs)) and calculated with two methods (Euler angles and True axial). Motion of torso and dominant humerus of thirty participants free from any upper limb impairments was tracked using both systems. Each participant performed a functional tasks protocol. Humeral axial rotation was calculated with Euler decomposition and the True axial method. Waveforms were compared with two-way ANOVA statistical parametric mapping. A consistent pattern emerged: axial rotation was not different between motion capture systems when using the True axial method (p > .05), but motion capture systems showed relatively large magnitude differences (~ 20-30°) when using Euler angle calculation. Between-calculation method differences were large for both motion capture systems. Findings suggest that the True axial rotation method may result in more consistent findings that will allow for precise measurements and comparison between motion capture systems. Two methods for calculating humeral axial rotation measured from optical motion capture and inertial measurement units were compared.
肱骨运动的测量和分析具有挑战性。通常,欧拉/卡丹序列用于肱骨角度分解,但旋转序列的选择对结果有重大影响。一种称为真轴向旋转计算的新方法可能更精确。本研究的目的是比较通过两种系统(光学运动捕捉和惯性测量单元(IMU))测量并使用两种方法(欧拉角和真轴向)计算得到的肱骨轴向旋转。使用这两种系统对30名无任何上肢损伤的参与者的躯干和优势肱骨的运动进行跟踪。每位参与者执行一项功能任务方案。用欧拉分解法和真轴向法计算肱骨轴向旋转。采用双向方差分析统计参数映射对波形进行比较。出现了一种一致的模式:使用真轴向法时,运动捕捉系统之间的轴向旋转没有差异(p>0.05),但使用欧拉角计算时,运动捕捉系统显示出相对较大的幅度差异(约20-30°)。两种运动捕捉系统的计算方法之间的差异都很大。研究结果表明,真轴向旋转方法可能会得出更一致的结果,从而能够在运动捕捉系统之间进行精确的测量和比较。比较了从光学运动捕捉和惯性测量单元测量肱骨轴向旋转的两种方法。