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计算矢状面角动量的参考点选择会影响对动态平衡的推断。

The choice of reference point for computing sagittal plane angular momentum affects inferences about dynamic balance.

机构信息

Department of Biomedical Engineering, University of Southern California, Los Angeles, CA, United States of America.

School of Engineering and Applied Sciences, Harvard University, Cambridge, MA, United States of America.

出版信息

PeerJ. 2022 May 12;10:e13371. doi: 10.7717/peerj.13371. eCollection 2022.

Abstract

BACKGROUND

Measures of whole-body angular momentum in the sagittal plane are commonly used to characterize dynamic balance during human walking. To compute angular momentum, one must specify a reference point about which momentum is calculated. Although biomechanists primarily compute angular momentum about the center of mass (CoM), momentum-based controllers for humanoid robots often use the center of pressure. Here, we asked if the choice of the reference point influences interpretations of how dynamic balance is controlled in the sagittal plane during perturbed walking.

METHODS

Eleven healthy young individuals walked on a dual-belt treadmill at their self-selected speed. Balance disturbances were generated by treadmill accelerations of varying magnitudes and directions. We computed angular momentum about two reference points: (1) the CoM or (2) the leading edge of the base of support and then projected it along the mediolateral axes that pass through either of the reference points as the sagittal plane angular momentum. We also performed principal component analysis to determine if the choice of reference point influences our interpretations of how intersegmental coordination patterns contribute to perturbation recovery.

RESULTS

We found that the peak angular momentum was correlated with perturbation amplitude and the slope of this relationship did not differ between reference points. One advantage of using a reference point at the CoM is that one can easily determine how the momenta from contralateral limbs, such as the left and right legs, offset one another to regulate the whole-body angular momentum. Alternatively, analysis of coordination patterns referenced to the leading edge of the base of support may provide more insight into the inverted-pendulum dynamics of walking during responses to sudden losses of balance.

摘要

背景

人体在矢状面的整体角动量测量常用于描述行走时的动态平衡。为了计算角动量,必须指定一个参考点,动量是围绕该点计算的。虽然生物力学家主要是围绕质心(CoM)计算角动量,但仿人机器人的动量控制器通常使用压力中心。在这里,我们想知道参考点的选择是否会影响对矢状面中受扰行走时动态平衡如何控制的解释。

方法

11 名健康的年轻人以自选速度在双带跑步机上行走。平衡干扰是通过跑步机的不同大小和方向的加速度产生的。我们围绕两个参考点计算角动量:(1)质心或(2)支撑基础的前缘,然后将其沿着通过任一个参考点的左右轴投影为矢状面角动量。我们还进行了主成分分析,以确定参考点的选择是否会影响我们对节段间协调模式如何有助于恢复干扰的解释。

结果

我们发现,峰值角动量与干扰幅度相关,而这种关系的斜率在参考点之间没有差异。使用质心参考点的一个优点是,人们可以很容易地确定来自对侧肢体(如左腿和右腿)的动量如何相互抵消以调节整个身体的角动量。相反,分析参考支撑基础前缘的协调模式可能会更深入地了解在突然失去平衡时行走的倒摆动力学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f9e/9107787/ad0dc8da84e3/peerj-10-13371-g001.jpg

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