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首页> 外文期刊>Biomedizinische Technik >Computation of spatio-temporal parameters in level walking using a single inertial system in lean and obese adolescents
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Computation of spatio-temporal parameters in level walking using a single inertial system in lean and obese adolescents

机译:肥胖和肥胖青少年使用单一惯性系统进行水平行走时空参数的计算

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摘要

In recent years, the availability of low-cost equipment capable of recording kinematic data during walking has facilitated the outdoor assessment of gait parameters, thus overcoming the limitations of three-dimensional instrumented gait analysis (3D-GA). The aim of this study is twofold: firstly, to investigate whether a single sensor on the lower trunk could provide valid spatio-temporal parameters in level walking in normal-weight and obese adolescents compared to instrumented gait analysis (GA); secondly, to investigate whether the inertial sensor is capable of capturing the spatio-temporal features of obese adolescent gait. These were assessed in 10 obese and 8 non-obese adolescents using both a single inertial sensor on the lower trunk and an optoelectronic system. The parameters obtained were not statistically different in either normal-weight or obese participants between the two methods. Obese adolescents walked with longer stance and double support phase compared to normal-weight participants. The results showed that the inertial system is a valid means of evaluating spatio-temporal parameters in obese individuals.
机译:近年来,能够在步行过程中记录运动数据的低成本设备的可用性促进了户外步态参数的评估,从而克服了三维仪器化步态分析(3D-GA)的局限性。这项研究的目的有两个方面:首先,与正常步态和肥胖的步态分析相比,研究下躯干上的单个传感器是否可以在正常体重和肥胖的青少年水平行走中提供有效的时空参数;其次,研究惯性传感器是否能够捕捉肥胖青少年步态的时空特征。使用下躯干上的单个惯性传感器和光电系统对10名肥胖和8名非肥胖青少年进行了评估。两种方法在正常体重或肥胖参与者中获得的参数在统计学上均无差异。与体重正常的参与者相比,肥胖的青少年以更长的姿势和双支撑阶段行走。结果表明,惯性系统是评估肥胖个体时空参数的有效手段。

著录项

  • 来源
    《Biomedizinische Technik》 |2017年第5期|505-511|共7页
  • 作者单位

    Politecn Milan, Dept Elect Informat & Bioengn, Pzza Leonardo Da Vinci 32, I-20133 Milan, Italy;

    Osped San Giuseppe, Ist Auxol Italiano, IRCCS, Orthopaed Rehabil Unit, Via Cadorna 90, I-28824 Oggebbio, VB, Italy|Osped San Giuseppe, Clin Lab Gait Anal & Posture, Via Cadorna 90, I-28824 Oggebbio, VB, Italy;

    Politecn Milan, Dept Elect Informat & Bioengn, Pzza Leonardo Da Vinci 32, I-20133 Milan, Italy;

    Politecn Milan, Dept Elect Informat & Bioengn, Pzza Leonardo Da Vinci 32, I-20133 Milan, Italy|Tosinvest Sanita, IRCCS San Raffaele Pisana, Rome, Italy;

    Osped San Giuseppe, Ist Auxol Italiano, IRCCS, Orthopaed Rehabil Unit, Via Cadorna 90, I-28824 Oggebbio, VB, Italy|Osped San Giuseppe, Clin Lab Gait Anal & Posture, Via Cadorna 90, I-28824 Oggebbio, VB, Italy;

    Osped San Giuseppe, Ist Auxol Italiano, IRCCS, Div Auxol, Via Cadorna 90, I-28824 Oggebbio, VB, Italy|Osped San Giuseppe, Expt Lab Auxoendocrinol Res, Via Cadorna 90, I-28824 Oggebbio, VB, Italy;

    Osped San Giuseppe, Ist Auxol Italiano, IRCCS, Div Auxol, Via Cadorna 90, I-28824 Oggebbio, VB, Italy|Osped San Giuseppe, Expt Lab Auxoendocrinol Res, Via Cadorna 90, I-28824 Oggebbio, VB, Italy;

    Osped San Giuseppe, Ist Auxol Italiano, IRCCS, Div Auxol, Via Cadorna 90, I-28824 Oggebbio, VB, Italy|Osped San Giuseppe, Expt Lab Auxoendocrinol Res, Via Cadorna 90, I-28824 Oggebbio, VB, Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    gait; inertial sensor; obesity; validation;

    机译:步态;惯性传感器;肥胖;验证;

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