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Linking lung function to structural damage of alveolar epithelium in ventilator-induced lung injury

机译:将肺功能与呼吸机肺损伤肺泡上皮细胞结构损伤的关联功能

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摘要

Understanding how the mechanisms of ventilator-induced lung injury (VILI), namely atelectrauma and volutrauma, contribute to the failure of the blood-gas barrier and subsequent intrusion of edematous fluid into the airspace is essential for the design of mechanical ventilation strategies that minimize VILI. We ventilated mice with different combinations of tidal volume and positive end-expiratory pressure (PEEP) and linked degradation in lung function measurements to injury of the alveolar epithelium observed via scanning electron microscopy. Ventilating with both high inspiratory plateau pressure and zero PEEP was necessary to cause derangements in lung function as well as visually apparent physical damage to the alveolar epithelium of initially healthy mice. In particular, the epithelial injury was tightly associated with indicators of alveolar collapse. These results support the hypothesis that mechanical damage to the epithelium during VILI is at least partially attributed to atelectrauma-induced damage of alveolar type I epithelial cells.
机译:了解呼吸机诱导的肺损伤机制(Vili),即在电酶和卷,促进血气屏障的失败以及随后的水肺流体侵入空域,对于最小化维利最小化的机械通气策略是必不可少的。我们用不同组合的潮气体积和正末期呼气压力(PEEP)和肺功能测量的链接降解通过扫描电子显微镜观察到的肺泡上皮的损伤,以及通过扫描电子显微镜观察的损伤,与肺函数测量的损伤有关。对于高吸气平台压力和零窥视来说是必要的,导致肺功能的紊乱以及对最初健康小鼠的肺泡上皮进行视觉上表观的物理损伤。特别地,上皮损伤与肺泡崩溃的指标紧密相关。这些结果支持假设,即vili期间对上皮的机械损伤至少部分地被归因于电动肺泡型I上皮细胞的损伤。

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