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On the regulation of depth and rate of breathing

机译:关于深度和呼吸频率的调节

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1. The relationships between the depth of a breath and the durations of the inspiratory and expiratory phases have been studied in cat and in man during rebreathing, and in cat using artificial inflations of different magnitudes and timings.2. In the cat, the apparent volume threshold for termination of inspiration (Hering—Breuer threshold) decreased with time from the onset of the inspiratory phase.3. Both in rebreathing experiments and with artificially imposed inflations in the cat, the inspiratory duration TI was dependent upon tidal volume VT, and this dependence could be expressed by a hyperbolic relationship of the form (VT-V0) TI = C where V0 and C are constants.4. The time course of this `Hering—Breuer' threshold was dependent on intact vagus nerves. After vagotomy the inspiratory duration remained essentially constant with changes in tidal volume produced either by artificial inflation or by the increased respiratory drive due to accumulation of CO2 during rebreathing.5. In man during rebreathing, the relation between volume and inspiratory duration typically showed two different characteristics. 1, at tidal volumes up to 1·5-2 times eupnoeic values, inspiratory duration did not change as tidal volume increased in response to increased PCO2. This range of operation has been designated range 1. 2, as tidal volume increased above this range 1 a second range designated range 2 was observed where inspiratory duration was volume dependent in the same manner as in the cat.6. In cat under pentobarbitone anaesthesia, a range 1 operation was not seen except after vagotomy. However, under urethane anaesthesia a range 1 plus a range 2 operation could be seen.7. The differences between cat and man appeared to be largely quantitative rather than qualitative.8. In both cat and man, expiratory duration was dependent on inspiratory duration, usually with a linear relationship.9. The experimental results were assembled in the form of an inspiratory characteristic and a timing relationship that serve as a model of the respiratory mechanisms controlling the depth and rate of breathing. The model predicts that the depth and duration of a breath are related in a definite manner fixed by the system characteristics and that ventilation is adjusted by setting the appropriate operating point on these characteristics. The operating point is determined primarily by how quickly lung volume increases, i.e. the rate of increase of inspiratory motor activity.
机译:1.研究了猫和人在呼吸过程中呼吸深度与吸气和呼气阶段持续时间之间的关系,并在猫中使用了不同幅度和时间的人工充气。在猫中,吸气终止的表观体积阈值(Hering-Breuer阈值)从吸气阶段开始就随时间而降低。无论是在呼吸实验中还是在猫的人工充气中,吸气持续时间TI都取决于潮气量VT,并且这种依赖关系可以通过以下形式的双曲线关系来表示:(VT-V0)TI = C其中V0和C为常数4。 “ Hering-Breuer”阈值的时间过程取决于完整的迷走神经。迷走神经切断术后,吸气持续时间基本保持恒定,这是由于人工充气或由于呼吸过程中CO2积累引起的呼吸驱动增加而引起的潮气量的改变。5。在人的呼吸过程中,呼吸量和持续时间之间的关系通常表现出两个不同的特征。如图1所示,在潮气量达到正常值的1·5-2倍时,随着PCO2的增加潮气量增加,吸气时间没有变化。该操作范围已指定为范围1。2,当潮气量增加到该范围1以上时,观察到指定为范围2的第二范围,其中吸气持续时间与Cat.6中的方式相同。在戊巴比妥麻醉下的猫中,除了迷走神经切断术后,未进行1级手术。然而,在氨基甲酸乙酯麻醉下,可以看到范围1加上范围2的手术。7。猫与人之间的差异似乎在很大程度上是定量的而不是定性的。8。在猫和人中,呼气持续时间均取决于吸气持续时间,通常呈线性关系9。实验结果以吸气特性和时间关系的形式组合在一起,可以作为控制呼吸深度和速率的呼吸机制的模型。该模型预测呼吸的深度和持续时间以一定的方式相关联,该方式由系统特性决定,并且通气可以通过在这些特性上设置适当的工作点来进行调整。工作点主要取决于肺容量增加的速度,即吸气运动活动的增加率。

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