Demand vs. capacity in the healthy pulmonary system.

J A Dempsey, B D Johnson
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Abstract

This review examines the lung and chest wall adaptation to exercise in health in persons of widely varying degrees of fitness. First we examine the regulation of breathing and gas exchange in the sedentary young adult who shows a near perfect regulation of alveolar gases, ventilation to perfusion distribution, diffusion equilibrium in the lung during all levels of exercise. This individual's respiratory muscles are also ideally recruited both tonically and phasically so as to meet multi-faceted postural, locomotory and respiratory demands. The topic of plasticity in the pulmonary system is discussed with specific reference to the effects of physical training and athleticism. The key point made here is that both homeostasis of gas transport and mechanical efficiency, with which the pulmonary system meets the demands of muscular exercise will depend upon the ability to maintain a significant margin between demand vs. structural capacity. Pulmonary diffusion capacity and at least some aspects of respiratory muscle function seem to be "overbuilt" in the young untrained adult. This margin of safety no longer prevails as the athlete becomes fitter. The cause is to be found in the relative lack of adaptability of the lung and chest wall to the training stimulus. Examples of demand coming very close or exceeding the capacity of the pulmonary system include the highly trained young endurance athlete and the aged athlete. Examples of "failure" or near failure in the pulmonary system's response to exercise include: a) exercise induced arterial hypoxemia via diffusion limitation; b) diaphragmatic fatigue in endurance exercise; c) expiratory flow limitation at VO2max.; d) achieving the capacity of inspiratory muscles for pressure generation at VO2max. and e) oxygen cost of breathing which is in excess of 15% of VO2max. in those athletes who experience the most mechanical limitation.

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健康肺系统的需求与容量。
本文综述了不同健康程度人群的肺和胸壁对运动的适应性。首先,我们研究了久坐不动的年轻人的呼吸和气体交换的调节,他们在所有水平的运动中表现出对肺泡气体、通气到灌注分布、肺扩散平衡的近乎完美的调节。这个人的呼吸肌在张力和相位上都得到了理想的调动,以满足多方面的姿势、运动和呼吸需求。讨论了肺系统可塑性的话题,具体参考了体育训练和运动的影响。这里提出的关键观点是,肺系统满足肌肉运动需求的气体输送稳态和机械效率将取决于维持需求与结构能力之间的显著差额的能力。肺扩散能力和至少某些方面的呼吸肌功能似乎是“过度建设”的年轻未经训练的成年人。当运动员变得更健康时,这个安全范围就不再存在了。其原因在于肺和胸壁对训练刺激的适应性相对不足。需求非常接近或超过肺系统容量的例子包括训练有素的年轻耐力运动员和老年运动员。肺系统对运动反应的“衰竭”或接近衰竭的例子包括:a)运动通过扩散限制引起的动脉低氧血症;B)耐力运动中膈肌疲劳;c) VO2max呼气流量限制;d)在VO2max下达到吸气肌产生压力的能力。e)呼吸耗氧量超过最大摄氧量的15%。在那些经历了最严重的机械限制的运动员中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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