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重新构建全身角动量:探究直线和转弯步态中低通滤波动态局部参考帧的影响。

Reframing Whole-Body Angular Momentum: Exploring the Impact of Low-Pass Filtered Dynamic Local Reference Frames During Straight-Line and Turning Gaits.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2024;32:3167-3178. doi: 10.1109/TNSRE.2024.3449706. Epub 2024 Sep 3.

Abstract

Accurately estimating whole-body angular momentum (WBAM) during daily activities may benefit from choosing a locally-defined reference frame aligned with anatomical axes, particularly during activities involving body turns. Local reference frames, potentially defined by pelvis heading angles, horizontal center of mass velocity (vCoM), or average angular velocity ( Aω ), can be utilized. To minimize the impact of inherent mediolateral oscillations of these frames, such as those caused by pelvis or vCoM rotation in the transverse plane, a low-pass filter is recommended. This study investigates how differences among global, local reference frames pre- and post-filtering affect WBAM component distribution across anatomical axes during straight-line walking and various turning tasks, which is lacking in the literature. Results highlighted significant effects of reference frame choice on WBAM distribution in the anteroposterior (AP) and mediolateral (ML) axes in all tasks. Specifically, expressing WBAM in the vCoM-oriented local reference frame yielded significantly lower (or higher) WBAM in the AP (or ML) axes compared to pelvis-oriented and Aω -oriented frames. However, these significant differences disappeared after employing a low-pass filter to local reference frames. Therefore, employing low-pass filtered local reference frames is crucial to enhance their applicability in both straight-line and turning tasks, ensuring more precise WBAM estimates. In applications that require expressing anatomical axes-dependent biomechanical parameters in a local reference frame, pelvis- and vCoM-oriented frames are more practical compared to the A ω -oriented frame, as they can be determined by a reduced optical marker set or inertial sensors in future applications when the whole-body kinematics is not available.

摘要

准确估计日常活动中的整体角动量(WBAM)可能受益于选择与解剖轴对齐的局部参考系,特别是在涉及身体转动的活动中。可以使用局部参考系,这些参考系可能由骨盆朝向角、水平质心速度(vCoM)或平均角速度(Aω)定义。为了最小化这些框架固有横摆振荡的影响,例如骨盆或 vCoM 在横平面中的旋转引起的影响,建议使用低通滤波器。本研究调查了在滤波前后,全局和局部参考系之间的差异如何影响直线行走和各种转弯任务中解剖轴上的 WBAM 分量分布,这在文献中是缺乏的。结果强调了参考系选择对所有任务中 AP 和 ML 轴上 WBAM 分布的显著影响。具体而言,在 vCoM 定向的局部参考系中表达 WBAM 会导致 AP(或 ML)轴上的 WBAM 显著低于(或高于)骨盆定向和 Aω定向框架。然而,在对局部参考系应用低通滤波器后,这些显著差异消失了。因此,采用低通滤波的局部参考系对于增强其在直线和转弯任务中的适用性至关重要,确保更精确的 WBAM 估计。在需要在局部参考系中表达依赖于解剖轴的生物力学参数的应用中,与 Aω定向框架相比,骨盆和 vCoM 定向框架更实用,因为它们可以通过减少的光学标记集或惯性传感器在未来应用中确定,当无法获得整个身体运动学时。

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