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Reliability and validity of a smartphone-based assessment of gait parameters across walking speed and smartphone locations: Body, bag, belt, hand, and pocket

机译:步行速度和智能手机位置的基于智能手机的评估的可靠性和有效性:身体,包,皮带,手和口袋

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Highlights ? Smartphone-based reliability and validity of gait was evaluated versus GAITRite. ? Assessment was performed at varying gait speeds and across five smartphone locations. ? Body, bag, and belt placement had high validity during comfortable and fast gait. ? Step length and gait velocity had high validity at slow speeds for all locations. ? Excellent reliability was shown for body and belt conditions across all speeds. Abstract The assessment of spatiotemporal gait parameters is a useful clinical indicator of health status. Unfortunately, most assessment tools require controlled laboratory environments which can be expensive and time consuming. As smartphones with embedded sensors are becoming ubiquitous, this technology can provide a cost-effective, easily deployable method for assessing gait. Therefore, the purpose of this study was to assess the reliability and validity of a smartphone-based accelerometer in quantifying spatiotemporal gait parameters when attached to the body or in a bag, belt, hand, and pocket. Thirty-four healthy adults were asked to walk at self-selected comfortable, slow, and fast speeds over a 10-m walkway while carrying a smartphone. Step length, step time, gait velocity, and cadence were computed from smartphone-based accelerometers and validated with GAITRite. Across all walking speeds, smartphone data had excellent reliability (ICC 2,1 ≥0.90) for the body and belt locations, with bag, hand, and pocket locations having good to excellent reliability (ICC 2,1 ≥0.69). Correlations between the smartphone-based and GAITRite-based systems were very high for the body (r=0.89, 0.98, 0.96, and 0.87 for step length, step time, gait velocity, and cadence, respectively). Similarly, Bland-Altman analysis demonstrated that the bias approached zero, particularly in the body, bag, and belt conditions under comfortable and fast speeds. Thus, smartphone-based assessments of gait are most valid when placed on the body, in a bag, or on a belt. The use of a smartphone to assess gait can provide relevant data to clinicians without encumbering the user and allow for data collection in the free-living environment.
机译:强调 ?基于智能手机的可靠性和步态的有效性与Gaitrite进行了评估。还评估以不同的步态速度和五个智能手机位置进行。还在舒适和快速的步态期间,身体,袋子和皮带展示位置具有很高的有效性。还步长和步态速度对所有位置的慢速速度很高。还在所有速度上显示出身体和皮带条件的优异可靠性。摘要时尚步态参数的评估是一种有用的健康状况临床指标。不幸的是,大多数评估工具需要受控的实验室环境,这可能是昂贵且耗时的。由于具有嵌入式传感器的智能手机正在变得无处不在,这项技术可以提供用于评估步态的成本效益,易于部署的方法。因此,本研究的目的是评估智能手机的加速度计的可靠性和有效性,在连接到身体或袋子,带,手和口袋时量化时空步态参数。在携带智能手机时,要求三十四名健康成年人在自我选择的舒适,慢速和快速速度上行走。从基于智能手机的加速度计计算步长,步长,步态速度和节奏,并用Gaitrite验证。在所有步行速度上,智能手机数据对于身体和皮带位置具有出色的可靠性(ICC2,1≥0.90),带袋,手和袋位置,具有良好的可靠性(ICC2,1≥0.69)。基于智能手机和基于Gaitrite的系统之间的相关性对于身体(R = 0.89,0.98,0.96和0.87)分别非常高,分别用于步长,步进时间,步态速度和节奏的速度。同样,Bland-Altman分析表明,偏差接近零,特别是在舒适和快速速度下的身体,袋子和皮带条件下。因此,当放置在体内,在袋子或腰带上时,步态的基于智能手机的评估最有效。使用智能手机来评估步态可以向临床医生提供相关数据,而不会妨碍用户,并允许在自由生活环境中进行数据收集。

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