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首页> 外文期刊>Journal of Biomechanics >Evaluation of a mixed approach combining stationary and wearable systems to monitor gait over long distance.
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Evaluation of a mixed approach combining stationary and wearable systems to monitor gait over long distance.

机译:对固定和可穿戴系统相结合的混合方法的评估,以监控长距离的步态。

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Thanks to decades of research, gait analysis has become an efficient tool. However, mainly due to the price of the motion capture systems, standard gait laboratories have the capability to measure only a few consecutive steps of ground walking. Recently, wearable systems were proposed to measure human motion without volume limitation. Although accurate, these systems are incompatible with most of existing calibration procedures and several years of research will be necessary for their validation. A new approach consisting of using a stationary system with a small capture volume for the calibration procedure and then to measure gait using a wearable system could be very advantageous. It could benefit from the knowledge related to stationary systems, allow long distance monitoring and provide new descriptive parameters. The aim of this study was to demonstrate the potential of this approach. Thus, a combined system was proposed to measure the 3D lower body joints angles and segmental angular velocities. It was then assessed in terms of reliability towards the calibration procedure, repeatability and concurrent validity. The dispersion of the joint angles across calibrations was comparable to those of stationary systems and good reliability was obtained for the angular velocities. The repeatability results confirmed that mean cycle kinematics of long distance walks could be used for subjects' comparison and pointed out an interest for the variability between cycles. Finally, kinematics differences were observed between participants with different ankle conditions. In conclusion, this study demonstrated the potential of a mixed approach for human movement analysis.
机译:经过数十年的研究,步态分析已成为一种有效的工具。然而,主要由于运动捕捉系统的价格,标准步态实验室只能测量几个连续的地面行走步骤。最近,提出了可穿戴系统来测量人体运动而没有体积限制。尽管准确,但这些系统与大多数现有的校准程序不兼容,并且需要几年的研究才能对其进行验证。一种新的方法可能是非常有利的,该方法包括使用具有较小捕获量的固定系统进行校准程序,然后使用可穿戴系统测量步态。它可以从与固定系统相关的知识中受益,可以进行远距离监视并提供新的描述性参数。这项研究的目的是证明这种方法的潜力。因此,提出了一种组合系统来测量3D下半身关节角度和分段角速度。然后根据对校准程序的可靠性,可重复性和同时有效性进行评估。各个校准之间的关节角散度与固定系统相当,并且角速度获得了良好的可靠性。重复性结果证实,长距离步行的平均周期运动学可用于受试者的比较,并指出了人们对周期之间变异性的兴趣。最后,在脚踝状况不同的参与者之间观察到运动学差异。总而言之,这项研究证明了一种用于人体运动分析的混合方法的潜力。

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