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当在跑步机上行走时背包负荷变化时,通过向前倾斜来维持质心在矢状面中脚踝和膝盖的轨迹和方向。

Center of mass trajectory and orientation to ankle and knee in sagittal plane is maintained with forward lean when backpack load changes during treadmill walking.

机构信息

Department of Physical Therapy and Athletic Training, College of Health and Rehabilitation Sciences, Sargent College, Boston University, MA, United States.

出版信息

J Biomech. 2013 Jan 4;46(1):70-6. doi: 10.1016/j.jbiomech.2012.10.004. Epub 2012 Nov 10.

DOI:10.1016/j.jbiomech.2012.10.004
PMID:23149079
Abstract

Maintaining the normal shape and amplitude of the vertical trajectory of the center of mass (COM) during stance has been shown to maximize the efficiency of unloaded gait. Kinematic adaptations to load carriage, such as forward lean have yet to be understood in relation to COM movement. The purpose of this study is to better understand how load impacts the vertical COM(TSYS) trajectory and to clarify the impact of forward lean as it relates to the dynamics of sagittal plane COM(TSYS) movement during stance with changing load. 17 subjects walked on treadmill at a constant preferred walking velocity while nine different loads ranging from 12.5% to 40% bodyweight were systematically added and removed from a backpack. Kinematic data were collected using an Optotrak, three-dimensional motion analysis system and used to estimate position of the COM as well as segment and COM-to-joint vector orientation angles. The shape and amplitude of the COM vertical trajectory was maintained across all loaded conditions. The orientations of COM-to-ankle and -knee vectors were maintained in all loaded conditions except the heaviest load (40% BW). Results suggest that forward lean changed linearly with changes in load to maintain the COM-to-ankle and -knee vector orientations. COM vertical trajectory was maintained by a combination of invariants including lower-limb segment angles and a constant direction of toe-off impulse vector. The kinematic invariants found suggest a simplified control mechanism by which the system limits degrees of freedom and potentially minimizes torque about lower-extremity joints with added load.

摘要

维持质心(COM)在站立时垂直轨迹的正常形状和幅度已被证明可以最大程度地提高无负载步态的效率。对于负载搬运的运动适应性,例如前倾,尚未与 COM 运动相关联来理解。本研究的目的是更好地了解负载如何影响垂直 COM(TSYS)轨迹,并阐明前倾的影响,因为它与在改变负载时站立时矢状面 COM(TSYS)运动的动力学有关。17 名受试者在跑步机上以恒定的首选步行速度行走,同时从背包中系统地添加和移除 9 种不同的负载,范围从 12.5%到 40%体重。运动学数据使用 Optotrak 三维运动分析系统收集,并用于估计 COM 的位置以及节段和 COM 到关节向量的方向角度。在所有加载条件下,COM 垂直轨迹的形状和幅度都保持不变。除了最重的负载(40% BW)外,COM 到脚踝和膝盖向量的方向在所有加载条件下都保持不变。结果表明,前倾随负载的变化呈线性变化,以保持 COM 到脚踝和膝盖向量的方向。COM 垂直轨迹通过包括下肢节段角度和恒定的离地冲量矢量方向在内的不变量来维持。发现的运动学不变量表明,系统通过限制自由度并可能最小化下肢关节的扭矩,从而简化了控制机制。

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