Hudgel D W, Hendricks C, Hamilton H B
Department of Medicine, Case Western Reserve University, Cleveland, Ohio 44109.
J Appl Physiol (1985). 1988 May;64(5):1930-5. doi: 10.1152/jappl.1988.64.5.1930.
In examining the mechanical properties of the respiratory system during sleep in healthy humans, we observed that the inspiratory pressure-flow relationship of the upper airway was often flow limited and too curvilinear to be predicted by the Rohrer equation. The purposes of this study were 1) to describe a mathematical model that would better define the inspiratory pressure-flow relationship of the upper airway during sleep and 2) to identify the segment of airway responsible for the sleep-related flow limitation. We measured nasal and total supralaryngeal pressure and flow during wakefulness and stage 2 sleep in five healthy male subjects lying supine. A right rectangular hyperbolic equation, V = (alpha P)/(beta + P), where V is flow, P is pressure, alpha is an asymptote for peak flow, and beta is pressure at a flow of alpha/2, was used in its linear form, P/V = (beta/alpha) + (P/alpha). The goodness of fit of the new equation was compared with that for the linearized Rohrer equation P/V = K1 + K2V. During wakefulness the fit of the hyperbolic equation to the actual pressure-flow data was equivalent to or significantly better than that for the Rohrer equation. During sleep the fit of the hyperbolic equation was superior to that for the Rohrer equation. For the whole supralaryngeal airway during sleep, the correlation coefficient for the hyperbolic equation was 0.90 +/- 0.50, and for the Rohrer equation it was 0.49 +/- 0.25. The flow-limiting segment was located within the pharyngeal airway, not in the nose.(ABSTRACT TRUNCATED AT 250 WORDS)
在研究健康人睡眠期间呼吸系统的力学特性时,我们观察到上呼吸道的吸气压力-流量关系常常受到流量限制,且曲线过于弯曲,无法用罗勒方程预测。本研究的目的是:1)描述一个能更好地定义睡眠期间上呼吸道吸气压力-流量关系的数学模型;2)确定与睡眠相关的流量限制所涉及的气道节段。我们测量了5名仰卧位健康男性受试者在清醒和非快速眼动睡眠2期时的鼻腔和喉上总压力及流量。采用右矩形双曲线方程V = (αP)/(β + P)(其中V为流量,P为压力,α为峰值流量的渐近线,β为流量为α/2时的压力)的线性形式P/V = (β/α) + (P/α)。将新方程的拟合优度与线性化的罗勒方程P/V = K1 + K2V的拟合优度进行比较。在清醒时,双曲线方程对实际压力-流量数据的拟合与罗勒方程相当或显著更好。在睡眠时,双曲线方程的拟合优于罗勒方程。对于睡眠期间的整个喉上气道,双曲线方程的相关系数为0.90±0.50,罗勒方程的相关系数为0.49±0.25。流量限制节段位于咽气道内,而非鼻腔。(摘要截短于250字)