Sainsbury M C, Lorenzi A, Williams E M, Hahn C E
Nuffield Department of Anaesthetics, University of Oxford, Radcliffe Infirmary, UK.
Respir Physiol. 1997 Apr;108(1):89-99. doi: 10.1016/s0034-5687(97)02527-9.
Continuous-ventilation mathematical gas exchange models are widely used since their analytical equations are amenable to physiological interpretation. They describe qualitatively the respiratory system's response to changing physiological conditions, but do not calculate accurate values for respiratory parameters when experimental tidal ventilation expired gas data are inserted into their analytical expressions. A simple mathematical expression is presented to reconcile continuous and tidal ventilation gas exchange models. Tidal ventilation experimental data can then be inserted into conventional continuous ventilation equations to produce more accurate measures of lung volume. This hypothesis is tested with controlled experimental tidal ventilation tracer gas data obtained from both wash-out and forced inspired sinusoid experiments, using a mechanical lung model with known volume; tidal volume, VT; and series 'airway' dead space VD. We show that the subtraction of 1/2 (VT + VD) from the lung volume calculated from the continuous ventilation theory can produce lung volume measurements which agree with the true lung volume to within +/-5%, for physiological lung volume values, for both wash-out and forced sinusoid techniques.
连续通气数学气体交换模型被广泛使用,因为其解析方程易于进行生理学解释。它们定性地描述了呼吸系统对不断变化的生理条件的反应,但当将实验潮气量呼出气体数据代入其解析表达式时,无法计算出呼吸参数的准确值。本文提出了一个简单的数学表达式,以协调连续通气和潮气量通气气体交换模型。然后,可以将潮气量通气实验数据代入传统的连续通气方程,以产生更准确的肺容积测量值。使用具有已知容积、潮气量VT和串联“气道”死腔VD的机械肺模型,通过从冲洗和强制吸入正弦实验中获得的受控实验潮气量通气示踪气体数据来检验这一假设。我们表明,从连续通气理论计算出的肺容积中减去1/2(VT + VD),对于冲洗和强制正弦技术,对于生理肺容积值,所得到的肺容积测量值与真实肺容积的误差在±5%以内。