Van Hoye Karen, Boen Filip, Lefevre Johan
a Physical Activity, Sports and Health, Kinesiology , Leuven , Belgium.
J Sports Sci. 2015;33(10):1007-18. doi: 10.1080/02640414.2014.981846. Epub 2014 Dec 24.
This study examines the validity of the SenseWear Armband in different temperatures using the old (SenseWear v2.2) and newest version of the algorithm (SenseWear v5.2) against indirect calorimetry (IC). Thirty-nine male and female students (21.1 ± 1.41 years) completed an exercise trial in 19°C, 26°C and 33°C consisting of 5 min standing followed by alternating walking/running at 35% and 65% of their maximal oxygen uptake. The accuracy of the algorithms was evaluated by comparing estimated energy expenditure (EE) to IC using a mixed-model design. No difference was reported in EE between the different temperatures for IC. Both algorithms estimated EE significantly higher when exercising at high intensity in 33°C compared to 19°C. Compared to IC, SenseWear v2.2 accurately estimated EE during standing and light intensity exercise but underestimated EE when exercising in a hot environment and at high intensity. SenseWear v5.2 showed a difference when exercising at high intensity in thermoneutral and warm conditions. The new algorithm improved EE estimation in hot environments and at high intensity compared to the old version. However, given the inherent inaccuracy of the EE estimates of SenseWear, greater weight should be given to direct monitor outputs rather than the ability of a monitor to estimate EE precisely.
本研究使用旧版(SenseWear v2.2)和最新版算法(SenseWear v5.2),针对间接量热法(IC),检验了SenseWear臂带在不同温度下的有效性。39名男女学生(21.1±1.41岁)在19°C、26°C和33°C环境下完成了一项运动试验,试验包括5分钟站立,随后以其最大摄氧量的35%和65%交替进行步行/跑步。采用混合模型设计,通过将估计能量消耗(EE)与IC进行比较,评估算法的准确性。IC在不同温度下的EE未报告有差异。与19°C相比,两种算法在33°C高强度运动时估计的EE均显著更高。与IC相比,SenseWear v2.2在站立和低强度运动时能准确估计EE,但在热环境和高强度运动时低估了EE。SenseWear v5.2在热中性和温暖条件下高强度运动时显示出差异。与旧版本相比,新算法在热环境和高强度运动时改善了EE估计。然而,鉴于SenseWear的EE估计存在固有不准确性,应更重视直接监测输出,而非监测器精确估计EE的能力。