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Separation of rotational and translational segmental momentum to assess movement coordination during walking

机译:分离旋转和平移段动量以评估步行过程中的运动协调性

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摘要

This investigation presents an analysis of segmental angular momentum to describe segmental coordination during walking. Generating and arresting momentum is an intuitive concept, and also forms the foundation of Newton-Euler dynamics. Total segmental angular momentum is separated into separate components, translational angular momentum (TAM) and rotational angular momentum (RAM), which provide different but complementary perspectives of the segmental dynamics needed to achieve forward progression during walking. TAM was referenced to the stance foot, which provides insight into the mechanisms behind how forward progression is achieved through coordinated segmental motion relative to the foot. Translational and rotational segmental moments were calculated directly from TAM and RAM, via Euler’s 1st and 2nd laws in angular momentum form, respectively, and are composed of the effects of intersegmental forces and joint moments. Using data from 14 healthy participants, the effort required to generate and arrest momentum were assessed by linking the features of segmental angular momentum and the associated segmental moments to well-known spatiotemporal and kinetic features of the gait cycle. Segmental momentum provides an opportunity to explore and understand system-wide dynamics of coordination from an alternative perspective that is rooted in fundamentals of dynamics, and can be estimated using only segmental kinematic measurements.
机译:这项研究提出了对节段角动量的分析,以描述步行过程中节段的协调性。产生和阻止动量是一个直观的概念,并且还构成了牛顿-欧拉动力学的基础。总的节段角动量分为独立的部分,即平移角动量(TAM)和旋转角动量(RAM),它们提供了在行走过程中实现前进所需的节段动力学的不同但互补的观点。 TAM引用了脚的姿势,它提供了有关如何通过相对于脚的协调节段运动来实现向前进展的机制的见解。平移和旋转分段矩分别通过角动量形式的欧拉1 st 和2 nd 定律直接从TAM和RAM计算得出,并且由节间效应组成力量和共同时刻。使用来自14位健康参与者的数据,通过将节段角动量的特征和相关的节段矩与步态周期的众所周知的时空和动力学特征联系起来,评估了产生和停止动量所需的努力。分段动量提供了一个机会,可以从根植于动力学基础的替代角度探索和理解系统范围内的协调动力学,并且只能使用分段运动学测量来估算。

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