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Bring Gait Lab to Everyday Life: Gait Analysis in Terms of Activities of Daily Living

机译:带来步态实验室日常生活:在日常生活活动方面的步态分析

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摘要

With the development of the Internet of Things (IoT), wearable technologies have been proposed to measure gait parameters in everyday life. However, since both diseases and activities could influence gait patterns, clinicians cannot use the measured gait parameters for clinical applications without knowing the corresponding activities. To address this problem, a novel gait analysis method-"gait analysis in terms of activities of daily living (ADLs)"-was proposed based on a wearable Smart Insole system. Twenty six gait parameters were extracted to realize a systematic gait analysis. Novel activity recognition algorithms based on characteristics of human gait were proposed to recognize ADLs, including "sitting," "standing," "walking," "running," "ascend stairs," and "descend stairs" with high accuracy and low computation load. To evaluate the performance of "gait analysis in terms of ADLs," an experiment consisting of a sequence of different ADLs was designed to simulate the scenario of everyday life. In the result, gait parameters measured during different activities were automatically highlighted with different colors, which made it easy to see whether the gait pattern change was caused by activities or diseases. Besides, a refined gait analysis could be realized by individually extracting and analyzing the gait parameters of a specific activity. The results indicate that "gait analysis in terms of ADLs" is a feasible method to reach the aim of bringing gait lab to everyday life.
机译:随着事物互联网(物联网),已经提出了可穿戴技术来测量日常生活中的步态参数。然而,由于疾病和活动都会影响步态模式,因此在不知道相应的活动的情况下,临床医生不能使用测量的步态参数进行临床应用。为了解决这个问题,基于可穿戴智能鞋垫系统提出了一种新的步态分析方法 - “在日常生活(ADL)的活动中的步态分析”。提取二十六个步态参数以实现系统的步态分析。提出了基于人态步态特征的新型活动识别算法,以识别ADL,包括“坐姿”,“站立”,“走路”,“跑步”,“上升楼梯,”和“下降楼梯”,具有高精度和低计算负荷。为了评估“在ADL方面的步态分析”的性能,该实验由一系列不同的ADL组成的实验旨在模拟日常生活的场景。结果,在不同的活动期间测量的步态参数用不同的颜色自动突出显示,这使得易于看待步态模式的变化是由活动或疾病引起的。此外,通过单独提取和分析特定活动的步态参数,可以实现精细的步态分析。结果表明,“ADLS方面的步态分析”是一种可行的方法,以实现将步态实验室带到日常生活中的目的。

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