Douglas N J, Wraith P K, Brash H M, Millar J, Sudlow M F, Flenley D C
J Appl Physiol Respir Environ Exerc Physiol. 1980 May;48(5):903-10. doi: 10.1152/jappl.1980.48.5.903.
A computer program was developed to calculate the frequency dependence of dynamic compliance (Cdyn) using continuous data analysis. Cdyn was measured repeatedly in eight normal human subjects over a 2-yr period. Comparison with Cdyn results measured manually showed that the computer program improved 10-fold the ratio of variance within subjects to between subjects of the compliance at specific frequencies, but there was only slight improvement in indices of the slope of the frequency dependence of compliance. We suggest that the absolute compliance at specific frequencies merits further consideration as a pathophysiological measurement and that, if the frequency dependence of compliance continues to be used, standardization of its calculation should be applied and the wide normal range should be more widely appreciated. Measurements of Cdyn in subjects breathing 80% helium-20% oxygen confirm that inertia is insignificant when breathing with tidal volumes of less than 500 ml and frequency of less than 1.5 Hz.
开发了一个计算机程序,用于通过连续数据分析来计算动态顺应性(Cdyn)的频率依赖性。在两年时间内,对8名正常人类受试者重复测量了Cdyn。与手动测量的Cdyn结果相比,该计算机程序使特定频率下顺应性的受试者内方差与受试者间方差之比提高了10倍,但顺应性频率依赖性斜率指标仅有轻微改善。我们建议,特定频率下的绝对顺应性作为一种病理生理测量值得进一步考虑,如果继续使用顺应性的频率依赖性,应规范其计算方法,并更广泛地认识到其较宽的正常范围。对呼吸80%氦气 - 20%氧气的受试者进行的Cdyn测量证实,当潮气量小于500 ml且频率小于1.5 Hz时,惯性可忽略不计。