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Agreement between temporal and spatial gait parameters from an instrumented walkway and treadmill system at matched walking speed

机译:步行速度和跑步机系统在步行速度匹配时的时空步态参数之间的一致性

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Background: Commercially available instrumented treadmill systems that provide continuous measures of temporospatial gait parameters have recently become available for clinical gait analysis. This study evaluated the level of agreement between temporospatial gait parameters derived from a new instrumented treadmill, which incorporated a capacitance-based pressure array, with those measured by a conventional instrumented walkway (criterion standard). Methods: Temporospatial gait parameters were estimated from 39 healthy adults while walking over an instrumented walkway (GAITRite?) and instrumented treadmill system (Zebris) at matched speed. Differences in temporospatial parameters derived from the two systems were evaluated using repeated measures ANOVA models. Pearson-product-moment correlations were used to investigate relationships between variables measured by each system. Agreement was assessed by calculating the bias and 95% limits of agreement. Results: All temporospatial parameters measured via the instrumented walkway were significantly different from those obtained from the instrumented treadmill ( P .01). Temporospatial parameters derived from the two systems were highly correlated (r, 0.79-0.95). The 95% limits of agreement for temporal parameters were typically less than ±2% of gait cycle duration. However, 95% limits of agreement for spatial measures were as much as ±5. cm. Conclusions: Differences in temporospatial parameters between systems were small but statistically significant and of similar magnitude to changes reported between shod and unshod gait in healthy young adults. Temporospatial parameters derived from an instrumented treadmill, therefore, are not representative of those obtained from an instrumented walkway and should not be interpreted with reference to literature on overground walking.
机译:背景:可连续测量颞pat步态参数的市售仪器式跑步机系统最近已可用于临床步态分析。这项研究评估了从新型器械跑步机(结合了基于电容的压力阵列)得到的颞pat步态参数与常规器械走道(标准标准)所测得的一致性水平。方法:从39名健康成年人中,以相匹配的速度走过仪器人行道(GAITRite?)和仪器跑步机系统(Zebris)时,估算了颞pat的步态参数。使用重复测量方差分析模型评估了来自两个系统的颞pat参数的差异。皮尔逊积矩相关性用于研究每个系统测量的变量之间的关系。通过计算偏差和协议的95%限制来评估协议。结果:所有通过仪器走道测量的颞pat参数与通过仪器跑步机获得的参数均存在显着差异(P <.01)。来自两个系统的颞参数高度相关(r,0.79-0.95)。时间参数一致性的95%限制通常小于步态周期持续时间的±2%。但是,空间度量的一致性的95%限制高达±5。厘米。结论:系统之间的颞pat参数差异很小,但在统计学上显着,并且与健康的年轻人中步态和不步态步态之间的变化幅度相似。因此,源自器械跑步机的颞pat参数不能代表从器械行人通道获得的参数,因此不应参考有关地面行走的文献进行解释。

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