van Hees Vincent T, van Lummel Rob C, Westerterp Klaas R
Department of Human Biology, Maastricht University, Maastricht, The Netherlands.
Obesity (Silver Spring). 2009 Jun;17(6):1287-92. doi: 10.1038/oby.2009.55. Epub 2009 Mar 12.
Activity-related energy expenditure (AEE) is difficult to quantify, especially under sedentary conditions. Here, a model was developed using the detected type of physical activity (PA) and movement intensity (MI), based on a tri-axial seismic accelerometer (DynaPort MiniMod; McRoberts B.V., The Hague, the Netherlands), with energy expenditure for PA as a reference. The relation between AEE (J/min/kg), MI, and the type of PA was determined for standardized PAs as performed in a laboratory including: lying, sitting, standing, and walking. AEE (J/min/kg) was calculated from total energy expenditure (TEE) and sleeping metabolic rate (SMR) as assessed with indirect calorimetry ((TEEx0.9)-SMR). Subsequently, the model was validated over 23-h intervals in a respiration chamber. Subjects were 15 healthy women (age: 22+/-2 years; BMI: 24.0+/-4.0 kg/m2). Predicted AEE in the chamber was significantly related to measured AEE both within (r2=0.81+/-0.06, P<0.00001) and between (r2=0.70, P<0.001) subjects. The explained variation in AEE by the model was higher than the explained variation by MI alone. This shows that a tri-axial seismic accelerometer is a valid tool for estimating AEE under sedentary conditions.
与活动相关的能量消耗(AEE)难以量化,尤其是在久坐不动的情况下。在此,基于三轴地震加速度计(DynaPort MiniMod;荷兰海牙的McRoberts B.V.),利用检测到的身体活动(PA)类型和运动强度(MI),以PA的能量消耗作为参考,开发了一个模型。针对在实验室中进行的标准化PA,包括:躺卧、坐着、站立和行走,确定了AEE(焦耳/分钟/千克)、MI与PA类型之间的关系。AEE(焦耳/分钟/千克)由总能量消耗(TEE)和通过间接量热法评估的睡眠代谢率(SMR)计算得出((TEE×0.9)-SMR)。随后,在呼吸室内对该模型进行了23小时的验证。受试者为15名健康女性(年龄:22±2岁;体重指数:24.0±4.0千克/平方米)。室内预测的AEE与测量的AEE在受试者内部(r2 = 0.81±0.06,P<0.00001)和受试者之间(r2 = 0.70,P<0.001)均显著相关。该模型对AEE的解释变异高于仅由MI解释的变异。这表明三轴地震加速度计是估算久坐不动情况下AEE的有效工具。