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The mechanics of airway closure.

机译:气道关闭的力学。

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We describe how surface-tension-driven instabilities of the lung's liquid lining may lead to pulmonary airway closure via the formation of liquid bridges that occlude the airway lumen. Using simple theoretical models, we demonstrate that this process may occur via a purely fluid-mechanical "film collapse" or through a coupled, fluid-elastic "compliant collapse" mechanism. Both mechanisms can lead to airway closure in times comparable with the breathing cycle, suggesting that surface tension is the primary mechanical effect responsible for the closure observed in peripheral regions of the human lungs. We conclude by discussing the influence of additional effects not included in the simple models, such as gravity, the presence of pulmonary surfactant, respiratory flow and wall motion, the airways' geometry, and the mechanical structure of the airway walls.
机译:我们描述了肺液体衬里的表面张力驱动不稳定性如何通过形成阻塞气道腔的液桥的形成而导致肺气道闭合。使用简单的理论模型,我们证明了此过程可能是通过纯粹的流体力学“薄膜塌陷”或通过耦合的流体弹性“顺应塌陷”机制发生的。两种机制均可导致呼吸道关闭,其时间可与呼吸周期相媲美,这表明表面张力是造成人肺外围区域关闭的主要机械作用。我们通过讨论简单模型中未包括的其他影响的影响来得出结论,例如重力,肺表面活性剂的存在,呼吸流量和壁运动,气道的几何形状以及气道壁的机械结构。

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