Department of Kinesiology, Michigan State University, 27P Intramural Sports Circle, East Lansing, MI, 48824-1034, USA.
Eur J Appl Physiol. 2011 May;111(5):883-7. doi: 10.1007/s00421-010-1695-0. Epub 2010 Oct 24.
The SenseWear Armband (SWA) has been shown to be a valid and practical tool to assess energy expenditure during habitual physical activity. However, previous studies have focused on low-to-moderate intensity activities. The purpose of this study was to assess the validity of the SWA during high intensity exercise. Twenty (ten males, ten females) endurance trained subjects, 24.3 (±2.8) years of age, performed three 10-min treadmill runs at 65, 75, and 85% of their VO(2max) each and also ran outside for 30 min at their preferred speed. Energy expenditure was measured with the SWA (software version 6.1) and a portable indirect calorimetry system (Jaeger Oxycon Mobile(®)). The SWA showed a ceiling effect around an intensity of ten METs. Since all subjects exceeded that intensity range during the exercise trials, the SWA significantly underestimated energy expenditure at high intensities. The intra-individual correlations between MET values calculated by the SWA and values derived from the Oxycon, however, were significant for all but two subjects (r = 0.390-0.933, mean = 0.66 ± 0.25). While providing accurate results for energy expenditure during low-to-moderate intensity physical activities, the SWA does not provide accurate estimates of energy expenditure at high intensity levels. The threshold for accurate measurements seems to be around an intensity of ten METs.
SenseWear 臂带(SWA)已被证明是一种评估日常体力活动中能量消耗的有效且实用的工具。然而,以前的研究主要集中在低至中等强度的活动上。本研究的目的是评估 SWA 在高强度运动中的有效性。二十名(十名男性,十名女性)耐力训练受试者,年龄 24.3(±2.8)岁,分别以 65%、75%和 85%的最大摄氧量进行三次 10 分钟的跑步机跑步,并且以他们喜欢的速度在户外跑步 30 分钟。能量消耗通过 SWA(软件版本 6.1)和便携式间接测热系统(Jaeger Oxycon Mobile(®))进行测量。SWA 在强度约为 10 METs 时出现上限效应。由于所有受试者在运动试验中都超过了该强度范围,因此 SWA 在高强度下显著低估了能量消耗。然而,SWA 计算的 MET 值与 Oxycon 得出的值之间的个体内相关性除了两个受试者外均具有统计学意义(r=0.390-0.933,平均值=0.66±0.25)。虽然 SWA 可以为低至中等强度的体力活动中的能量消耗提供准确的结果,但它不能准确估计高强度水平下的能量消耗。准确测量的阈值似乎在 10 METs 左右。