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Energy Expenditure During Incline Walking - Benefits of Integrating a Barometer into Activity Monitors

机译:倾斜步行过程中的能量消耗-将气压计集成到活动监视器中的好处

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Objective: This study aimed to compare different methods to determine energy expenditure (EE) on incline walking. Approach: The methods tested were a conventional triaxial accelerometer (GT3X), a versatile system (SenseWear), both utilizing single regression models, and a device equipped with a triaxial accelerometer and an air pressure sensor (move II). Twenty-five healthy participants wore the activity monitors and a portable indirect calorimeter (IC) as reference while walking up- and downhill as well as up- and downstairs. The accuracy of the three devices for estimating EE was assessed based on Pearson correlation, ICC, and Bland-Altman analysis. Main results: For GT3X and SenseWear the ICCs showed a weak correlation (between 0.42 and 0.08) and for move II a strong correlation (between 0.97 and 0.84) between the prediction of energy cost and the output from IC, respectively. Overall, the differences absolute to the IC values were 11 to 35 (12 to 30) times higher for the GT3X (SenseWear) than for the move II devices. Significance: The study showed that a device equipped with an accelerometer and an air pressure sensor had higher accuracy in predicting EE during incline walking than a conventional accelerometer or a versatile system.
机译:目的:本研究旨在比较确定倾斜步行能量消耗(EE)的不同方法。方法:测试的方法是常规三轴加速度计(GT3X),多功能系统(SenseWear),均使用单一回归模型,以及配备三轴加速度计和气压传感器的设备(移动II)。 25名健康参与者在上下,上下楼梯时都戴着活动监视器和便携式间接热量计(IC)作为参考。基于Pearson相关性,ICC和Bland-Altman分析,评估了三种估算EE的设备的准确性。主要结果:对于GT3X和SenseWear,ICC分别在能源成本预测和IC输出之间显示出弱相关性(介于0.42和0.08之间),而对于II移动则显示出强相关性(介于0.97和0.84之间)。总体而言,GT3X(SenseWear)的IC值绝对差比Move II器件高11至35倍(12至30倍)。启示:研究表明,配备有加速度计和气压传感器的设备比传统的加速度计或多功能系统在倾斜行走期间预测EE的准确性更高。

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