Tajiri Sakurako, Kondo Tetsuri, Yamabayashi Hajime
Department of Medicine, Tokai University School of Medicine, Bohseidai, Isehara, Kanagawa, 259-1193 Japan.
J Physiol Sci. 2006 Dec;56(6):449-54. doi: 10.2170/physiolsci.RP004506. Epub 2006 Dec 1.
The functional residual capacity (FRC) and airway resistance (R(aw)) of the rat were measured, using a newly designed body plethysmograph (BPG), the inner environment of which was maintained at body temperature and was water-vapor saturated. The subjects were anesthetized and tracheally intubated male Wistar rats (n = 15). After measuring the FRC and R(aw), we analyzed the effects of inhaled methacholine (Mch, 0-8 mg/ml) on R(aw).The determined FRC was 5.37 +/- 0.22 ml (mean +/- SE). An almost linear relationship between box pressure and respiratory flow was obtained when the difference between box-gas temperature and the rectal temperature of the rat was less than 1.0 degrees C. The R(aw) at FRC was 0.230 +/- 0.017 cm H(2)O/ml/s. It increased proportionally with increases in the Mch concentration. When the dynamic changes in R(aw) were analyzed, the R(aw) was found to progressively increase during expiration; this increase continued throughout inspiration. Thus in the rat, R(aw) is not simply a function of changes in lung volume. In conclusion, the humidity- and temperature-adjusted BPG provided an absolute and possibly dynamic value of R(aw).
使用新设计的体容积描记器(BPG)测量大鼠的功能残气量(FRC)和气道阻力(R(aw)),该体容积描记器的内部环境维持在体温并饱和水蒸气。实验对象为麻醉并气管插管的雄性Wistar大鼠(n = 15)。在测量FRC和R(aw)后,我们分析了吸入乙酰甲胆碱(Mch,0 - 8 mg/ml)对R(aw)的影响。测定的FRC为5.37 +/- 0.22 ml(平均值 +/- 标准误)。当体容积描记器箱内气体温度与大鼠直肠温度之差小于1.0℃时,箱内压力与呼吸流量之间呈现几乎线性的关系。FRC时的R(aw)为0.230 +/- 0.017 cmH₂O/ml/s。其随Mch浓度增加而成比例增加。当分析R(aw)的动态变化时,发现R(aw)在呼气过程中逐渐增加;这种增加在整个吸气过程中持续。因此在大鼠中,R(aw)并非简单地是肺容积变化的函数。总之,经湿度和温度调节的BPG提供了R(aw)的绝对值且可能是动态值。