Lekeux P, Art T, Clercx C, Gustin P
Laboratory for Cardio-Pulmonary Functional Investigation, Faculty of Veterinary Medicine, University of Liege, Brussels, Belgium.
Vet Res Commun. 1988;12(1):61-6. doi: 10.1007/BF00396404.
The observation that dynamic compliance (Cdyn) tended to rise with respiratory frequency (f) in adult cattle led us to reassess the importance of inertial pressures in measuring Cdyn in large animals. Five healthy Friesian cows were selected for their ability to show an increase of f without significant change in tidal volume (VT). Dynamic compliance was measured three times, both at the resting f (21 +/- 1 cpm), and at higher f (49 +/- 3 cpm), obtained by an artificial increase in the dead space of the breathing mask. Frequency-response characteristics of the measuring instruments were matched up to 12 Hz. The inertia of the lungs and gas stream (In) was calculated as the ratio of the accelerative pressure change to the simultaneous change in volume acceleration. Inertance was also estimated from the dimensions of the bovine airways and from the relative linear flow velocities reported by Rohrer (1915). Dynamic compliance measured during rapid breathing was significantly higher (p less than or equal to 0.01) than base-line values. Dynamic compliance was strongly correlated with f (r = +0.96). Measured and estimated In were 0.002 and 0.003 kPa.sec2.L-1 respectively. Dynamic compliance did not differ significantly from base-line values when it was corrected for the estimated inertance effect.
成年牛的动态顺应性(Cdyn)往往随呼吸频率(f)升高,这一观察结果促使我们重新评估在大型动物中测量Cdyn时惯性压力的重要性。选择了五头健康的弗里斯兰奶牛,因其能够在潮气量(VT)无显著变化的情况下使f增加。在静息频率(21±1次/分钟)以及通过人为增加呼吸面罩死腔获得的较高频率(49±3次/分钟)下,动态顺应性均测量了三次。测量仪器的频率响应特性匹配至12赫兹。肺和气流的惯性(In)计算为加速压力变化与同时的体积加速度变化之比。惯性也根据牛气道的尺寸以及罗勒(1915年)报告的相对线性流速进行估算。快速呼吸期间测量的动态顺应性显著高于基线值(p≤0.01)。动态顺应性与f密切相关(r = +0.96)。测量的In和估算的In分别为0.002和0.003千帕·秒²·升⁻¹。校正估算的惯性效应后,动态顺应性与基线值无显著差异。