Department of Internal Medicine, Division of Cardiovascular Diseases, Mayo Clinic, Rochester, Minnesota, USA.
J Appl Physiol (1985). 2012 Sep;113(6):872-7. doi: 10.1152/japplphysiol.00163.2012. Epub 2012 Jul 5.
Functional values of LogSD of the ventilation distribution (σ(V)) have been reported previously, but functional values of LogSD of the perfusion distribution (σ(q)) and the coefficient of correlation between ventilation and perfusion (ρ) have not been measured in humans. Here, we report values for σ(V), σ(q), and ρ obtained from wash-in data for three gases, helium and two soluble gases, acetylene and dimethyl ether. Normal subjects inspired gas containing the test gases, and the concentrations of the gases at end-expiration during the first 10 breaths were measured with the subjects at rest and at increasing levels of exercise. The regional distribution of ventilation and perfusion was described by a bivariate log-normal distribution with parameters σ(V), σ(q), and ρ, and these parameters were evaluated by matching the values of expired gas concentrations calculated for this distribution to the measured values. Values of cardiac output and LogSD ventilation/perfusion (Va/Q) were obtained. At rest, σ(q) is high (1.08 ± 0.12). With the onset of ventilation, σ(q) decreases to 0.85 ± 0.09 but remains higher than σ(V) (0.43 ± 0.09) at all exercise levels. Rho increases to 0.87 ± 0.07, and the value of LogSD Va/Q for light and moderate exercise is primarily the result of the difference between the magnitudes of σ(q) and σ(V). With known values for the parameters, the bivariate distribution describes the comprehensive distribution of ventilation and perfusion that underlies the distribution of the Va/Q ratio.
通气分布(σ(V))的对数标准偏差的功能值先前已有报道,但尚未在人体中测量灌注分布(σ(q))和通气与灌注之间的相关系数(ρ)的对数标准偏差的功能值。在这里,我们报告了使用三种气体(氦气和两种可溶解气体乙炔和二甲醚)的吸入数据得出的 σ(V)、σ(q)和 ρ 值。正常受试者吸入含有测试气体的气体,在休息和逐渐增加运动水平时,测量受试者呼气末前 10 次呼吸的气体浓度。通气和灌注的区域分布用双变量对数正态分布来描述,参数为 σ(V)、σ(q)和 ρ,并通过将为该分布计算的呼出气体浓度值与测量值相匹配来评估这些参数。还获得了心输出量和 LogSD 通气/灌注(Va/Q)的值。在休息时,σ(q)较高(1.08 ± 0.12)。随着通气的开始,σ(q)降低到 0.85 ± 0.09,但在所有运动水平下仍高于 σ(V)(0.43 ± 0.09)。ρ 增加到 0.87 ± 0.07,并且轻至中度运动时 LogSD Va/Q 的值主要是 σ(q)和 σ(V)大小差异的结果。有了已知参数的值,双变量分布描述了 Va/Q 比值分布所依据的通气和灌注的综合分布。