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从正常步行到快走:步频和步幅对下肢关节力矩的影响。

From normal to fast walking: Impact of cadence and stride length on lower extremity joint moments.

作者信息

Ardestani Marzieh M, Ferrigno Christopher, Moazen Mehran, Wimmer Markus A

机构信息

Department of Orthopedic Surgery, Rush University Medical Center, Chicago, IL, USA.

Department of Orthopedic Surgery, Rush University Medical Center, Chicago, IL, USA; Department of Anatomy and Cell Biology, Rush University Medical Center, Chicago, IL, USA.

出版信息

Gait Posture. 2016 May;46:118-25. doi: 10.1016/j.gaitpost.2016.02.005. Epub 2016 Feb 11.

Abstract

This study aimed to clarify the influence of various speeding strategies (i.e. adjustments of cadence and stride length) on external joint moments. This study investigated the gait of 52 healthy subjects who performed self-selected normal and fast speed walking trials in a motion analysis laboratory. Subjects were classified into three separate groups based on how they increased their speed from normal to fast walking: (i) subjects who increased their cadence, (ii) subjects who increased their stride length and (iii) subjects who simultaneously increased both stride length and cadence. Joint moments were calculated using inverse dynamics and then compared between normal and fast speed trials within and between three groups using spatial parameter mapping. Individuals who increased cadence, but not stride length, to walk faster did not experience a significant increase in the lower limb joint moments. Conversely, subjects who increased their stride length or both stride length and cadence, experienced a significant increase in all joint moments. Additionally, our findings revealed that increasing the stride length had a higher impact on joint moments in the sagittal plane than those in the frontal plane. However, both sagittal and frontal plane moments were still more responsive to the gait speed change than transverse plane moments. This study suggests that the role of speed in altering the joint moment patterns depends on the individual's speed-regulating strategy, i.e. an increase in cadence or stride length. Since the confounding effect of walking speed is a major consideration in human gait research, future studies may investigate whether stride length is the confounding variable of interest.

摘要

本研究旨在阐明各种加速策略(即步频和步幅的调整)对关节外力矩的影响。本研究调查了52名健康受试者的步态,这些受试者在运动分析实验室中进行了自选的正常速度和快速行走试验。根据受试者从正常行走加速到快速行走的方式,将他们分为三个独立的组:(i)增加步频的受试者,(ii)增加步幅的受试者,以及(iii)同时增加步幅和步频的受试者。使用逆动力学计算关节力矩,然后使用空间参数映射在三组内和三组间的正常速度和快速行走试验之间进行比较。通过增加步频而不是步幅来加快行走速度的个体,其下肢关节力矩没有显著增加。相反,增加步幅或同时增加步幅和步频的受试者,其所有关节力矩都有显著增加。此外,我们的研究结果表明,增加步幅对矢状面关节力矩的影响比对额状面的影响更大。然而,矢状面和额状面的力矩对步态速度变化的反应仍然比横断面力矩更敏感。本研究表明,速度在改变关节力矩模式中的作用取决于个体的速度调节策略,即步频或步幅的增加。由于步行速度的混杂效应是人类步态研究中的一个主要考虑因素,未来的研究可能会调查步幅是否是感兴趣的混杂变量。

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