Kirby T P, Wraith P K, De Cort S C, Airlie M A, Hill J E, Carson E R, Flenley D C, Warren P M
Rayne Laboratory, Unit of Respiratory Medicine, University of Edinburgh, Scotland, U.K.
J Theor Biol. 1994 Jan 21;166(2):135-47. doi: 10.1006/jtbi.1994.1012.
We have developed a mathematical model to describe the dynamic ventilatory response to hypoxia. The ventilatory response to both transient (two to three breaths nitrogen) and 3 min step change hypoxic stimuli were measured in ten normal subjects during moderate exercise (oxygen consumption 0.96 +/- 0.08 1 min-1). The simplest model relating ventilation to ear oxygen saturation which adequately described the responses in all subjects consisted of two linear differential equations in parallel; both using the fall in oxygen saturation as input, and with the outputs summed to give the rise in ventilation. One equation had a fast time constant (< 3 sec), and the other a slow time constant. Non-linear terms included were (i) a "saturating" effect, similar to that described by the Michaelis-Menten equation, reducing the gain of the equation with the slow time constant as oxygen saturation falls, and (ii) "inhibition" or "potentiation" of the gain of the equation with a slow time constant as the output of the fast time constant equation increased. Repeated measurements in four subjects showed intra- and inter-subject variability for all parameters, with significant between-subject variability for the gain of the fast time constant equation. The final model structure is similar to that describing the peripheral chemoreceptor-mediated hypoxic ventilatory response in anaesthetized cats.
我们开发了一个数学模型来描述对低氧的动态通气反应。在适度运动(耗氧量0.96±0.08升/分钟)期间,对10名正常受试者测量了对短暂(两到三次呼吸氮气)和3分钟阶跃变化低氧刺激的通气反应。将通气与耳部氧饱和度相关的最简单模型,能充分描述所有受试者的反应,该模型由两个并行的线性微分方程组成;两者均以氧饱和度下降作为输入,且输出相加得出通气量的增加。一个方程具有快速时间常数(<3秒),另一个具有慢速时间常数。纳入的非线性项包括:(i)一种“饱和”效应,类似于米氏方程所描述的效应,随着氧饱和度下降,降低具有慢速时间常数的方程的增益;(ii)随着快速时间常数方程的输出增加,对具有慢速时间常数的方程的增益产生“抑制”或“增强”。对4名受试者的重复测量显示,所有参数在受试者内和受试者间均存在变异性,快速时间常数方程的增益在受试者间存在显著变异性。最终的模型结构类似于描述麻醉猫外周化学感受器介导的低氧通气反应的模型结构。