Stubbing D G, Pengelly L D, Morse J L, Jones N L
J Appl Physiol Respir Environ Exerc Physiol. 1980 Sep;49(3):506-10. doi: 10.1152/jappl.1980.49.3.506.
A body plethysmograph adapted to contain the pedals of an electrically braked cycle ergometer was used to measure pulmonary mechanics during steady-state exercise in 12 normal male subjects aged 22-65 yr. During exercise there was a progressive increase in residual volume to 119% of the value at rest (P less than 0.01), but functional residual capacity and total lung capacity did not change. The maximum expiratory flow-volume (MEFV) curves did not change and flow rates during tidal breathing did not exceed the MEFV curve. Dynamic pulmonary compliance fell to 91.3% of the control value and static expiratory pulmonary compliance fell to 76.9% of the control value (P less than 0.05). Pulmonary resistance did not change during exercise. Transpulmonary pressure during tidal breathing was negative even at the highest power outputs. The fall in compliance may be due to an increase in pulmonary capillary blood volume. These results demonstrate the importance of measuring absolute thoracic gas volume and the elastic properties of the lung when comparing pulmonary mechanics at rest and during exercise.
使用一种适合容纳电动刹车自行车测力计踏板的人体体积描记器,对12名年龄在22至65岁的正常男性受试者进行稳态运动期间的肺力学测量。运动期间,残气量逐渐增加至静息值的119%(P<0.01),但功能残气量和肺总量未发生变化。最大呼气流量-容积(MEFV)曲线未改变,潮气呼吸时的流速未超过MEFV曲线。动态肺顺应性降至对照值的91.3%,静态呼气肺顺应性降至对照值的76.9%(P<0.05)。运动期间肺阻力未改变。即使在最高功率输出时,潮气呼吸时的跨肺压也是负的。顺应性下降可能是由于肺毛细血管血容量增加所致。这些结果表明,在比较静息和运动时的肺力学时,测量绝对胸廓气体容积和肺的弹性特性非常重要。