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Mathematical determination of inspiratory upper airway resistance using a polynomial equation.

机译:使用多项式方程数学确定吸气上呼吸道阻力。

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We have previously shown that the pressure-flow relationship of the upper airway during nonrapid eye movement sleep can be characterized by a polynomial equation: F(P) = AP(3) + BP(2) + CP + D. On the basis of fluid mechanic principles, we hypothesized that we could objectively calculate upper airway resistance (R(UA)) using the polynomial equation. We manually measured RUA (mR(UA)) from the first linear portion of a pressure-flow loop in 544 breaths from 20 subjects and compared the mRUA to the R(UA) calculated from the polynomial equation (cRUA). Bland-Altman analysis showed that the mean difference between mR(UA) and cRUA was 0.0 cm H2O/L/s (95% CI, 0.1 to 0.1 cm H2O/L/s) with an upper limit of agreement of 2.0 cm H (2)O/L/s (95% CI, 1.9 to 2.1 cm H2O/L/s) and a lower limit of agreement -2.0 cm H2O/L/s (95% CI, -2.1 to -1.9 cm H2O/L/s). Additional Bland-Altman analyses showed that the agreement between the two measures was excellent for both inspiratory flow-limited and non-flow-limited breaths. We conclude that R(UA) can be measured in a simple, objective, and reproducible fashion from a polynomial function that characterizes the upper airway pressure-flow relationship.
机译:先前我们已经证明,可以通过多项式方程来表征非快速眼动睡眠中上呼吸道的压力-流量关系:F(P)= AP(3)+ BP(2)+ CP +D。流体力学原理,我们假设我们可以使用多项式方程来客观地计算上呼吸道阻力(R(UA))。我们从20位受试者的544次呼吸中,从压力流回路的第一个线性部分手动测量了RUA(mR(UA)),并将mRUA与根据多项式方程(cRUA)计算的R(UA)进行了比较。 Bland-Altman分析显示mR(UA)和cRUA之间的平均差为0.0 cm H2O / L / s(95%CI,0.1至0.1 cm H2O / L / s),协议上限为2.0 cm H( 2)O / L / s(95%CI,1.9至2.1 cm H2O / L / s)和协议下限-2.0 cm H2O / L / s(95%CI,-2.1至-1.9 cm H2O / L / s)。额外的Bland-Altman分析表明,两种方法之间的一致性对于吸气限流和非限流呼吸都是极好的。我们得出结论,可以从表征上呼吸道压力-流量关系的多项式函数以简单,客观和可再现的方式测量R(UA)。

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