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The pattern of stimulated breathing in man during non-elastic expiratory loading.

机译:非弹性呼气负荷下人的刺激呼吸模式。

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摘要

1. The pattern of breathing expressed as the relationship between tidal volume and the components of breath interval was studied in normal subjects during CO2 rebreathing, both under unloaded conditions and following the introduction of a non-elastic expiratory resistance. 2. Under unloaded conditions end-expiratory thoracic gas volume (FRC) measured plethysmographically did not alter during the course of the rebreathing experiment. Maximum tidal volume attained (VT, max.) was equal to or just less than the inspiratory capacity of the subject measured at rest. Expiratory reserve volume was not encroached upon even at the highest levels of ventilation. 3. Under loaded conditions the pattern of breathing was altered. VT, max. was diminished in all subjects and FRC showed a progressive rise during rebreathing which was proportional to the resistive load afforded by the artificial resistance. There were no consistent differences in the components of breath duration either at rest or on maximal ventilatory stimulation between the loaded and unloaded states. 4. It is suggested that the pattern of breathing adopted under conditions of expiratory non-elastic loading is influenced more by the secondary effects of breathing at an elevated lung volume, than by the effect of the non-elastic load per se.
机译:1.在正常条件下,在无负荷条件下和引入非弹性呼气阻力后,在正常的受试者中进行了CO2再呼吸期间研究了以潮气量和呼吸间隔成分之间的关​​系表示的呼吸方式。 2.在空载条件下,通过呼吸描记法测得的呼气末胸腔气体量(FRC)在重新呼吸实验过程中未发生变化。达到的最大潮气量(VT,最大值)等于或小于受试者静息时测得的吸气量。即使在最高通风水平下,呼气储备量也不会受到侵害。 3.在有负荷的条件下,呼吸方式发生了改变。最大VT在所有受试者中,FRC均降低,而FRC在呼吸时显示出逐渐升高的趋势,与人工阻力所提供的阻力负荷成正比。在有负荷状态和无负荷状态之间,在休息时或在最大通气刺激下,呼吸持续时间的分量均没有一致的差异。 4.建议在呼气性非弹性负荷条件下采用的呼吸方式受肺容积增加时呼吸的次要影响的影响要大于非弹性负荷本身的影响。

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