Nagle F J, Webb P, Wanta D M
Biodynamics Laboratory, University of Wisconsin, Madison 53706.
Med Sci Sports Exerc. 1990 Aug;22(4):540-4.
Energy balance can be written as 1) M = sigma Q +/- W +/- S, expressed as power (W), where M is the rate of metabolic energy transformation, sigma Q the rate of heat loss, W the work rate, and S the rate of body heat storage. When submaximal treadmill exercise continues long enough, body temperature stops changing, S becomes zero, and the heat storage term is dropped from equation 1. For uphill walking the equation becomes 2) M = sigma Q + Wvert, and for downhill walking it becomes 3) M = sigma Q - Wvert. This study tested the energy balance equations with direct measurements of heat exchange using a suit calorimeter and M from standard measurements of respiratory gas exchange. Ten healthy men walked on a motor driven treadmill at 1.5 m.s-1 at grades of 0, 5, 10, -5, and -10% for 70-90 min to ensure a thermal steady state. As expected, +Wvert was identified as a power output, whereas -Wvert was accounted for as a power input, totally transformed to heat in the downhill walking subject. There also appeared to be a quantity of non-thermal energy, Wwalk, needed to satisfy the energy balance equation. This was significant at 0, 5, and 10% grades (P less than 0.01) but not significant at -5 and -10% grades (P greater than 0.05). The data confirm previous results for level walking and extend them to include uphill walking. While it had been suggested that Wwalk represents an externalization of energy at the foot, the present data suggest an alternative explanation.(ABSTRACT TRUNCATED AT 250 WORDS)
能量平衡可表示为1) M = σQ ± W ± S,以功率(瓦特)表示,其中M为代谢能量转换率,σQ为热损失率,W为做功率,S为身体热量储存率。当次最大强度的跑步机运动持续足够长时间时,体温停止变化,S变为零,热量储存项从方程1中去掉。对于上坡行走,方程变为2) M = σQ + Wvert,对于下坡行走,方程变为3) M = σQ - Wvert。本研究使用套装量热计直接测量热交换以及通过标准呼吸气体交换测量M来检验能量平衡方程。10名健康男性在电动跑步机上以1.5米/秒的速度在坡度为0%、5%、10%、 -5%和 -10%的条件下行走70 - 90分钟,以确保达到热稳态。正如预期的那样,+Wvert被确定为功率输出,而 -Wvert被视为功率输入,在下坡行走的受试者中完全转化为热量。似乎还存在一定量的非热能Wwalk,以满足能量平衡方程。这在坡度为0%、5%和10%时具有显著性(P小于0.01),但在 -5%和 -10%时不具有显著性(P大于0.05)。这些数据证实了先前关于水平行走的结果,并将其扩展到包括上坡行走。虽然有人提出Wwalk代表足部能量的外化,但目前的数据提出了另一种解释。(摘要截断于250字)