...
首页> 外文期刊>Basic and applied myology >Validation of a portable system for spatial-temporal gait parameters based on a single inertial measurement unit and a mobile application
【24h】

Validation of a portable system for spatial-temporal gait parameters based on a single inertial measurement unit and a mobile application

机译:基于单个惯性测量单元和移动应用程序的空间步态参数验证便携式系统

获取原文
   

获取外文期刊封面封底 >>

       

摘要

There is a lack of commercially available low-cost technologies to assess gait clinically in non-controlled environments. As a consequence of this, there has been poor massification of motion measurement technologies that are both objective and reliable in nature. Advances about the study of gait and its interpretation in recent years using inertial sensors have allowed proposing acceptable alternatives for the development of portable and low-cost systems that contribute to people’s health in places and institutions that cannot acquire or maintain the operation of commercially available systems. A system based on a custom single Inertial Measurement Unit and a mobile application is proposed. Thus, an investigation is carried out using methodologies and algorithms found in the literature in order to get the main gait events and the spatial-temporal gait parameters. Twenty healthy Chilean subjects were assessed using a motion capture system simultaneously with the proposed tool. The results show that it is possible to estimate temporal gait parameters with slight differences respect gold--standard. We reach maximum mean differences of -2.35±5.02[step/min] for cadence, 0.03±0.04[sec] for stride time,0.02±0.03[sec] for step time, ±0.02[sec] for a single support time, 0.01±0.02[sec] for double support time and 0.01±0.03[m] for step length. As a result of experimental findings, we propose a new technological tool that can perform gait analysis. Our proposed system is user-friendly, low-cost, and portable. Therefore, we suggest that it could be an attractive technological tool that healthcare professionals could harness to objectively measure gait in environments that are either within the community or controlled. We also suggest that the tool could be used in countries where advanced clinical tools cannot be acquired. Therefore, we propose in this paper that our system is an attractive, alternative system that can be used for gait analysis by health professionals worldwide.
机译:缺乏商业上可获得的低成本技术,可以在非受控环境中临床评估步态。因此,既有差的大自然差价均易于差价。近年来使用惯性传感器研究步态及其解释的进展允许提出可接受的替代方案,以便开发便携式和低成本系统,这些系统有助于人们在无法获得或维持市售系统运行的地方和机构中的健康。提出了一种基于定制单个惯性测量单元和移动应用的系统。因此,使用文献中发现的方法和算法进行研究,以便获得主要步态事件和空间 - 时间步态参数。使用运动捕获系统与所提出的工具同时进行评估20个健康的智能。结果表明,有可能估计具有轻微差异的时间步态参数尊重金 - 标准。我们达到最大的平均差异-2.35±5.02 [步进/分钟]的节奏,步伐时间为0.03±0.04 [秒钟],步进时间为0.02±0.03 [秒钟],单个支撑时间为±0.02 [秒],0.01 ±0.02 [sec]的双支撑时间和阶梯长度为0.01±0.03 [m]。由于实验结果,我们提出了一种可以进行步态分析的新技术工具。我们所提出的系统是用户友好的,低成本和便携式的。因此,我们认为它可能是一个有吸引力的技术工具,医疗保健专业人员可以在社区或受控的环境中妨碍客观地测量步态。我们还建议该工具可用于无法获得高级临床工具的国家。因此,我们提出了本文,我们的系统是一种有吸引力的替代系统,可用于全世界健康专业人士的步态分析。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号