Sun M, Hill J O
Department of Pediatrics, Vanderbilt University, Nashville, TN 37232.
J Biomech. 1993 Mar;26(3):229-41. doi: 10.1016/0021-9290(93)90361-h.
A major limitation in understanding human energy balance is the ability to accurately quantify the amount of physical activity or work performed by human subjects. We describe the development and validation of a force platform (2.5 x 2.5 m) system for measuring external mechanical work performed by human subjects. The force platform system was constructed inside a whole-room indirect calorimeter, thus, allowing simultaneous measurement of the energy expenditure associated with physical activity. We demonstrated the accuracy of the system for measuring work performed using a solenoid (32 kg) to deliver controlled amounts of energy to the platform. In tests with human subjects we demonstrated that the system can accurately and reproducibly measure work performed, energy expenditure associated with work performed, and work efficiency (work performed divided by energy expenditure). Overall, we obtained high correlations (an average of 0.932 for 33 subjects), between mechanical work performed and energy expenditure. We believe this mechanical work-energy expenditure system will be useful in determining the importance of individual differences in amount and cost of physical activity in the regulation of body weight and in development of obesity.
理解人体能量平衡的一个主要限制在于准确量化人类受试者进行的体力活动或工作量的能力。我们描述了一种用于测量人类受试者外部机械功的测力平台(2.5×2.5米)系统的开发与验证。该测力平台系统构建在一个全室间接量热计内部,因此能够同时测量与体力活动相关的能量消耗。我们通过使用一个螺线管(32千克)向平台输送可控量的能量,展示了该系统测量所做功的准确性。在对人类受试者的测试中,我们证明该系统能够准确且可重复地测量所做功、与所做功相关的能量消耗以及工作效率(所做功除以能量消耗)。总体而言,我们在所做功与能量消耗之间获得了高度相关性(33名受试者的平均相关性为0.932)。我们认为这种机械功 - 能量消耗系统将有助于确定体力活动量和成本的个体差异在体重调节和肥胖症发展中的重要性。