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On a pseudo-rebreathing technique to assess the ventilatory sensitivity to carbon dioxide in man.

机译:用伪呼吸技术评估人对二氧化碳的通气敏感性。

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摘要

1. The ventilatory sensitivity to carbon dioxide obtained from a step-ramp CO2 challenge was compared to the CO2 sensitivity from the steady-state method. 2. Experiments were performed in nine healthy male subjects against a background of hyperoxia and in two subjects against a background of normoxia. 3. In each subject experiments were performed in which the stepwise increase in end-tidal PCO2 above its resting value (A) was varied (range 0-2 kPa) and the subsequent rate of rise of end-tidal PCO2 in time (R) kept constant at 0.6 or 0.8 kPa min-1. 4. The results of the hyperoxic experiments show that the slope of the non-steady-state ventilatory response to CO2 (Sn) is greatly influenced by the magnitude of A. An increase of A of 1 kPa results in a 54% increase of the ratio non-steady-state ventilatory CO2 sensitivity to steady-state ventilatory CO2 sensitivity (Ss). The magnitude of R plays a minor role in determining Sn. The normoxic experiments gave similar results. 5. In experiments performed during hyperoxia Sn approximates Ss when the magnitude of A is 0.5 kPa. 6. The results are discussed and related to a physiological model. Simulations with representative values for the model parameters are in fair agreement with experimental values.
机译:1.将阶跃式CO2挑战对二氧化碳的通气敏感性与稳态方法对CO2敏感性进行了比较。 2.在高氧背景下的9名健康男性受试者和常氧背景下的2名受试者中进行了实验。 3.在每个主题实验中,进行了潮汐末PCO2高于其静止值(A)的逐步增加(范围0-2 kPa)和随后的潮汐末PCO2随时间的上升速率(R)的实验。保持恒定在0.6或0.8 kPa min-1。 4.高氧实验的结果表明,A的量值极大地影响了对CO2(Sn)的非稳态通气响应的斜率。A的增加1 kPa会使A2的增加54%。非稳态通气CO2灵敏度与稳态通气CO2灵敏度(Ss)之比。 R的大小在确定Sn中起次要作用。常氧实验得出相似的结果。 5.在高氧期间进行的实验中,当A的大小为0.5 kPa时,Sn近似为Ss。 6.讨论结果并与生理模型有关。具有模型参数代表值的模拟与实验值完全一致。

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