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Evaluation of Activity Monitors to Estimate Energy Expenditure in Manual Wheelchair Users

机译:对活动监视器的评估,以估算手动轮椅用户的能源支出

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In an effort to make activity monitors usable by manual wheelchair users with Spinal Cord Injury (SCI), our study examines the validity of SenseWear Armband (SenseWear) and RT3 in assessing energy expenditure (EE) during wheelchair related activities. This paper presents the data obtained from six subjects (n=6) with SCI performing three activities, including wheelchair propulsion, arm-ergometer exercise and deskwork. The analysis presented here compares the EE estimated from the SenseWear and the RT3 with respect to the EE measured from a portable metabolic cart. It was found that the SenseWear overestimated EE for resting (+5.78%), wheelchair propulsion (+88.20%, +46.20%, and +138.21% for the three trials at different intensities, respectively), arm-ergometer exercise (+55.05%, +26.91%, and +39.17% for the three trials at different intensities, respectively) and deskwork (+13.11%). The results also indicate that RT3 underestimated EE for resting (-3.06%), wheelchair propulsion (-24.23%, -19.42%, and -9.98% for the three trials at different intensities, respectively), arm-ergometer exercise (-49.06%, -53.69% and -52.08 for the three trials at different intensities, respectively) and measured EE relatively accurate for deskwork. Good and moderate Intraclass correlations were found between EE measured by metabolic cart and EE estimated by SenseWear (0.787, p<0.0001) and RT3 (0.705, p<0.0001). Weka, machine learning software, was used to select attributes and model EE equations for the SenseWear and the RT3. Excellent and good Intraclass correlations were found between the EE measured by the metabolic cart and the estimated EE based on the models for SenseWear (0.944, p<0.0001) and RT3 (0.821, p<0.0001). Future work will test more subjects to refine the model and provide manual wheelchair users with a valid tool to gauge their daily physical activity and EE.
机译:努力使手动轮椅使用者具有脊髓损伤(SCI)可用的活动监视器,我们的研究在轮椅相关活动中评估能源支出(EE)中的Senswear Armband(Senswear)和RT3的有效性。本文介绍了从六个受试者(n = 6)获得的数据,SCI进行三项活动,包括轮椅推进,手臂钻头运动和桌面。这里提出的分析将来自感应器和RT3估计的EE相对于从便携式代谢推车测量的EE进行比较。发现Senswhear高估EE用于休息(+ 5.78%),轮椅推进(+ 88.20%,+ 46.20%,以及不同强度的三项试验的+ 46.20%,Arm-Ergometer运动(+ 55.05%)在不同强度的三项试验中,+ 26.91%,+ 39.17%,分别为桌面,桌面(+ 13.11%)。结果还表明,对于休息(-3.06%),轮椅推进(-24.23%,-19.42%和-9.98%,分别为不同强度的三项试验,ARM-ERGOMERS运动(-49.06%)在不同强度的三项试验中,分别为-53.69%和-52.08,并测量EE相对准确的桌面。通过由Senswolic推车和EE通过SenswWear(0.787,P <0.0001)和RT3(0.705,P <0.0001)测定的EE之间的良好和中度肠球相关性。 Weka,机器学习软件用于选择SenswWear和RT3的属性和模型EE方程。通过代谢推车和估计的EE基于Senswwear的模型(0.944,P <0.0001)和RT3(0.821,P <0.0001)测量的EE之间的EE之间发现了优异的肠胃相关性。未来的工作将测试更多的主题以改进模型,并提供有效工具的手动轮椅用户,以衡量其日常体育活动和ee。

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