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改变步行速度的动力学机制。

Kinetic mechanisms to alter walking speed.

作者信息

Orendurff Michael S, Bernatz Greta C, Schoen Jason A, Klute Glenn K

机构信息

Motion Analysis Laboratory, Center of Excellence for Limb Loss Prevention and Prosthetic Engineering, Rehabilitation Research and Development, Veterans Administration Puget Sound Health Care System, Seattle, WA, USA.

出版信息

Gait Posture. 2008 May;27(4):603-10. doi: 10.1016/j.gaitpost.2007.08.004. Epub 2007 Oct 25.

Abstract

A mechanism to modulate speed during human walking has not yet been proposed in the literature, even though changing walking speed is likely a necessary attribute of everyday ambulation. To understand how joint kinetics modulate walking speed 12 normal adults walked Fast (1.4m/s), Slow (1.0m/s), Accel (1.0-1.4m/s) and Decel (1.4-1.0m/s) trials while full body 3D kinematics and kinetics were collected. Reduced sagittal ankle plantarflexor moments were observed in Accel trials during early single limb stance (p<0.001) and increased sagittal plantarflexor moments were seen in Decel trials during early single limb stance (p<0.001) compared to steady speed walking. Modulating the sagittal ankle moment altered the center of pressure location and either attenuated (Accel) or accentuated (Decel) the early stance braking impulse to accelerate or decelerate the center of mass. The onset of walking speed changes occurred at approximately 15% of the gait cycle and did not support the concept of "controlled falling". Sagittal ankle push-off power appears a consequence of increased walking speed, but not the causative factor to increase walking speed.

摘要

尽管改变步行速度可能是日常行走的一个必要属性,但文献中尚未提出一种在人类行走过程中调节速度的机制。为了了解关节动力学如何调节步行速度,12名正常成年人在进行快速(1.4米/秒)、慢速(1.0米/秒)、加速(1.0 - 1.4米/秒)和减速(1.4 - 1.0米/秒)试验时,同时收集了全身三维运动学和动力学数据。与稳定速度行走相比,在加速试验的早期单肢支撑阶段观察到矢状面踝关节跖屈力矩减小(p<0.001),而在减速试验的早期单肢支撑阶段观察到矢状面跖屈力矩增加(p<0.001)。调节矢状面踝关节力矩会改变压力中心位置,并减弱(加速)或增强(减速)早期支撑期制动冲量,以加速或减速质心。步行速度变化的起始发生在步态周期的约15%处,并不支持“受控跌倒”的概念。矢状面踝关节蹬离功率似乎是步行速度增加的结果,而不是增加步行速度的 causative 因素。 (注:“causative”未找到合适中文释义,保留英文)

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