Epstein Ana, Godfrey Simon, Bar-Yishay Ephraim, Putilov Alex, Bark Hylton
School of Veterinary Medicine, Hebrew University of Jerusalem, P.O. Box 12, Rehovot 76100, and Institute of Pulmonology, Hadassah University Hospital, Israel.
Respir Physiol Neurobiol. 2007 May 14;156(2):179-86. doi: 10.1016/j.resp.2006.09.006. Epub 2006 Oct 21.
We adapted non-invasive techniques developed for human infants to measure total respiratory system compliance (Crs) and resistance (Rrs) in 21 healthy cats. The animals breathed through a face mask attached to a respiratory circuit and measurements were taken of changes in lung volume and airway pressure during brief occlusions of the airway at different lung volumes. The slope of the plot of change in volume against airway pressure yielded the multiple occlusion Crs with a mean (+/-95%CI) value of 6.8 (6.3-7.3) ml/cm H2O. In 12 animals measurements were made by the single breath technique in which occlusion was made early in expiration and on release, a plot of the subsequent relaxed expiratory flow and volume yielded the time constant (taurs), Crs and Rrs with mean (+/-95%CI) values of 0.27 (0.22-0.31) s, 7.0 (6.1-7.8) ml/cm H2O, and 38.7 (33.7-43.6) cm H2O/l/s, respectively. Rrs was significantly correlated inversely with forced expiratory flow at resting lung volume (V'maxFRC).
我们采用了为人类婴儿开发的非侵入性技术,来测量21只健康猫的总呼吸系统顺应性(Crs)和阻力(Rrs)。动物通过连接在呼吸回路的面罩呼吸,并在不同肺容量下气道短暂阻塞期间测量肺容量和气道压力的变化。肺容量变化与气道压力关系图的斜率得出多次阻塞Crs,其平均(±95%CI)值为6.8(6.3 - 7.3)ml/cm H₂O。在12只动物中,通过单次呼吸技术进行测量,即在呼气早期进行阻塞,在释放时,随后的松弛呼气流量和容量关系图得出时间常数(taurs)、Crs和Rrs,其平均(±95%CI)值分别为0.27(0.22 - 0.31)秒、7.0(6.1 - 7.8)ml/cm H₂O和38.7(33.7 - 43.6)cm H₂O/l/s。Rrs与静息肺容量时的用力呼气流量(V'maxFRC)呈显著负相关。