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The Validation of Gait-Stability Metrics to Assess Construction Workers' Fall Risk

机译:评估建筑工人跌倒风险的步态稳定性度量标准的验证

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Falling from height is the top cause of injuries and fatalities in the construction industry. Understanding the fall risk at different work environments can help to prevent fall accidents on a jobsite. While many previous studies attempted to assess the fall risk on a construction site, most of them are qualitative or subject to cognitive biases. In this context, this paper aims to introduce and validate a quantitative measure that allows researchers to characterize the fall risks of construction workers. In particular, this paper focuses on validating the fall risk predictive power of Maximum Lyapunov exponent (Max LE), which is one of the gait-stability metrics established in clinical settings. The kinematic data were collected using an inertial measurement unit (IMU) sensor attached to the right ankle of the subject performing different tasks. The Max LE for each tasks were then calculated based upon the EMU measurements. The results indicated a significant difference in the Max LE between different tasks, which indicates that Max LE has the potential to evaluate the dynamic stability of construction workers.
机译:从高处掉落是建筑业受伤和死亡的首要原因。了解不同工作环境下的跌倒风险有助于防止工地坠落事故。尽管许多先前的研究试图评估建筑工地的跌倒风险,但其中大多数是定性的或易受认知偏见的影响。在此背景下,本文旨在介绍和验证一种量化方法,该方法可让研究人员表征建筑工人的跌倒风险。特别是,本文着重于验证最大Lyapunov指数(Max LE)的跌倒风险预测能力,这是在临床环境中建立的步态稳定性指标之一。运动数据是使用惯性测量单元(IMU)传感器收集的,该传感器连接到执行不同任务的对象的右脚踝。然后根据EMU测量值计算每个任务的最大LE。结果表明,不同任务之间的最大LE差异显着,这表明最大LE有潜力评估建筑工人的动态稳定性。

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