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Flow and volume dependence of rat airway resistance during constant flow inflation and deflation.

机译:在恒定流量充胀和放气期间大鼠气道阻力的流量和体积依赖性。

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STUDY OBJECTIVES: The aim of this study was to measure the flow and volume dependence of both the ohmic and the viscoelastic pressure dissipations of the normal rat respiratory system separately during inflation and deflation. METHOD: The study was conducted in the Respiratory Physiology Laboratory in our institution. Measurements were obtained for Seven albino Wistar rats of both sexes by using the flow interruption method during constant flow inflations and deflations. Measurements included anesthesia induction, tracheostomy and positioning of a tracheal cannula, positive pressure ventilation, constant flow respiratory system inflations and deflations at two different volumes and flows. RESULTS: The ohmic resistance exhibited volume and flow dependence, decreasing with lung volume and increasing with flow rate, during both inflation and deflation. The stress relaxation-related viscoelastic resistance also exhibited volume and flow dependence. It decreased with the flow rate at a constant lung volume during both inflation and deflation, but exhibited a different behavior with the lung volume at a constant flow rate (i.e., increased during inflations and decreased during deflations). Thus, stress relaxation in the rat lungs exhibited a hysteretic behavior. CONCLUSIONS: The observed flow and volume dependence of respiratory system resistance may be predicted by an equation derived from a model of the respiratory system that consists of two distinct compartments. The equation agrees well with the experimental data and indicates that the loading time is the critical parameter on which stress relaxation depends, during both lung inflation and deflation.
机译:研究目的:这项研究的目的是分别测量正常大鼠呼吸系统在充气和放气期间的欧姆和粘弹性压力耗散的流量和体积依赖性。方法:这项研究是在我们机构的呼吸生理实验室进行的。通过在恒定流量充盈和放气期间使用流量中断方法获得了七只两性的白化Wistar大鼠。测量包括麻醉诱导,气管切开术和气管套管的定位,正压通气,恒定流量的呼吸系统充气和在两个不同体积和流量下的放气。结果:在充气和放气过程中,欧姆电阻均表现出与体积和流量的关系,随肺体积的增加而减小,随流速的增加而增加。与应力松弛有关的粘弹性也表现出体积和流动依赖性。它在充气和放气期间均以恒定的肺体积随流速降低而降低,但在恒定流速下表现出与肺体积不同的行为(即在充气期间增加而在放气期间降低)。因此,大鼠肺中的应力松弛表现出滞后行为。结论:观察到的呼吸系统阻力的流量和体积依赖性可以通过由两个不同隔室组成的呼吸系统模型得出的方程来预测。该方程与实验数据非常吻合,表明加载时间是肺部充胀和放气期间应力松弛所依赖的关键参数。

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