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首页> 外文期刊>Obesity research >Measuring free-living energy expenditure and physical activity with triaxial accelerometry.
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Measuring free-living energy expenditure and physical activity with triaxial accelerometry.

机译:用三轴加速度计测量自由活动的能量消耗和身体活动。

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摘要

OBJECTIVE: To investigate the ability of a newly developed triaxial accelerometer to predict total energy expenditure (EE) (TEE) and activity-related EE (AEE) in free-living conditions. RESEARCH METHODS AND PROCEDURES: Subjects were 29 healthy subjects between the ages of 18 and 40. The Triaxial Accelerometer for Movement Registration (Tracmor) was worn for 15 consecutive days. Tracmor output was defined as activity counts per day (ACD) for the sum of all three axes or each axis separately (ACD-X, ACD-Y, ACD-Z). TEE was measured with the doubly labeled water technique. Sleeping metabolic rate (SMR) was measured during an overnight stay in a respiration chamber. The physical activity level was calculated as TEE x SMR(-1), and AEE was calculated as [(0.9 x TEE) - SMR]. Body composition was calculated from body weight, body volume, and total body water using Siri's three-compartment model. RESULTS: Age, height, body mass, and ACD explained 83% of the variation in TEE [standard error of estimate (SEE) = 1.00 MJ/d] and 81% of the variation in AEE (SEE = 0.70 MJ/d). The partial correlations for ACD were 0.73 (p < 0.001) and 0.79 (p < 0.001) with TEE and AEE, respectively. When data on SMR or body composition were used with ACD, the explained variation in TEE was 90% (SEE = 0.74 and 0.77 MJ/d, respectively). The increase in the explained variation using three axes instead of one axis (vertical) was 5% (p < 0.05). DISCUSSION: The correlations between Tracmor output and EE measures are the highest reported so far. To measure daily life activities, the use of triaxial accelerometry seems beneficial to uniaxial.
机译:目的:研究新开发的三轴加速度计在自由生活条件下预测总能量消耗(EE)(TEE)和与活动有关的EE(AEE)的能力。研究方法和程序:受试者为29位年龄在18至40岁之间的健康受试者。运动配准三轴加速度计(Tracmor)连续佩戴15天。 Tracmor输出定义为所有三个轴或每个轴(ACD-X,ACD-Y,ACD-Z)之和的每日活动计数(ACD)。 TEE用双标水技术测量。在呼吸室中过夜时测量睡眠代谢率(SMR)。体力活动水平计算为TEE x SMR(-1),AEE计算为[(0.9 x TEE)-SMR]。使用Siri的三室模型,根据体重,体积和总水分计算出身体成分。结果:年龄,身高,体重和ACD解释了TEE的变化的83%[估计标准误(SEE)= 1.00 MJ / d]和81%的AEE的变化(SEE = 0.70 MJ / d)。与TEE和AEE的ACD偏相关分别为0.73(p <0.001)和0.79(p <0.001)。当将SMR或身体成分数据与ACD一起使用时,TEE的解释变异为90%(SEE分别为0.74和0.77 MJ / d)。使用三个轴而不是一个轴(垂直)的解释偏差增加了5%(p <0.05)。讨论:迄今为止,Tramcmor产出与EE度量之间的相关性最高。为了测量日常生活活动,使用三轴加速度计似乎有利于单轴。

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