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首页> 外文期刊>Gait & posture >A kinematic and kinetic comparison of overground and treadmill walking in healthy subjects.
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A kinematic and kinetic comparison of overground and treadmill walking in healthy subjects.

机译:在健康受试者中进行地面和跑步机行走的运动学和动力学比较。

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摘要

INTRODUCTION: Gait evaluation protocols using instrumented treadmills will be increasingly used in the near future. For this reason, it must be shown that using instrumented treadmills will produce measures of the ground reaction force adequate for inverse dynamic analysis, and differences between treadmill and overground gait must be well characterized. METHODS: Overground walking kinetics were estimated with the subjects walking at their self-selected comfortable walking speed. For the treadmill gait trials, the subjects walked on two treadmills, such that heel-strike occurred on the forward treadmill and toe-off occurred on the trailing treadmill. The treadmill was set to the average overground walking speed. Overground and treadmill data were evaluated using Vicon Plug-in Gait. The differences between the maxima and minima of kinematic and kinetic parameters for overground and treadmill gait were evaluated. RESULTS: The kinematics of treadmill and overground gait were very similar. Twelve of 22 kinematic parameter maxima were statistically significantly different (p<0.05), but the magnitude of the difference was generally less than 2 degrees . All GRF maxima were found to be statistically significantly smaller for treadmill versus overground gait (p<0.05) as were 15 of 18 moment, and 3 of 6 power maxima. However, the magnitude of the differences was comparable to the variability in normal gait parameters. The sagittal plane ankle moments were not statistically different for treadmill and overground gait. DISCUSSION: We have shown that treadmill gait is qualitatively and quantitatively similar to overground gait. Differences in kinematic and kinetic parameters can be detected in matched comparisons, particularly in the case of kinetic parameters. However, the magnitudes of these differences are all within the range of repeatability of measured kinematic parameters. Thus, the mechanics of treadmill and overground gait are very similar. CLINICAL SIGNIFICANCE: Having demonstrated the essential equivalence of treadmill and overground gait, it is now possible for clinical movement analysis to take advantage of treadmill-based protocols.
机译:简介:在不久的将来,使用仪器式跑步机的步态评估协议将越来越多地被使用。因此,必须证明使用仪表式跑步机将产生足以进行逆动态分析的地面反作用力测量值,并且必须很好地表征跑步机与地面步态之间的差异。方法:以受试者以他们自己选择的舒适步行速度行走时,估计其地面行走动力学。在跑步机步态试验中,受试者在两台跑步机上行走,从而在前部跑步机上发生了跟击,而在落后的跑步机上发生了脚趾脱下。跑步机设置为平均地面行走速度。使用Vicon插件步态评估了地面和跑步机数据。评估了地面和跑步机步态的运动学和动力学参数的最大值和最小值之间的差异。结果:跑步机和地面步态的运动学非常相似。 22个运动学参数最大值在统计学上有显着差异(p <0.05),但差异的大小通常小于2度。发现跑步机相对于地面步态的所有GRF最大值在统计学上都显着较小(p <0.05),例如18矩中的15矩和6幂中的3矩。但是,差异的大小可与正常步态参数的变化相比。跑步机和地面步态的矢状面踝力矩没有统计学差异。讨论:我们已经证明,跑步机的步态在质量和数量上都与地面步态类似。运动和动力学参数的差异可以在匹配的比较中检测到,特别是在动力学参数的情况下。但是,这些差异的大小都在测得的运动学参数的可重复性范围内。因此,跑步机和地面步态的力学原理非常相似。临床意义:已经证明了跑步机和地面步态的基本等同性,现在临床运动分析可以利用基于跑步机的方案。

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