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首页> 外文期刊>Journal of applied physiology >Impact of mechanical ventilation on the pathophysiology of progressive acute lung injury
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Impact of mechanical ventilation on the pathophysiology of progressive acute lung injury

机译:机械通气对渐进式肺损伤病理生理学的影响

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The earliest description of what is now known as the acute respiratory distress syndrome (ARDS) was a highly lethal double pneumonia. Ashbaugh and colleagues (Ashbaugh DG, Bigelow DB, Petty TL, Levine BE Lancet 2: 319-323, 1967) correctly identified the disease as ARDS in 1967. Their initial study showing the positive effect of mechanical ventilation with positive end-expiratory pressure (PEEP) on ARDS mortality was dampened when it was discovered that improperly used mechanical ventilation can cause a secondary ventilator-induced lung injury (VILI), thereby greatly exacerbating ARDS mortality. This Synthesis Report will review the pathophysiology of ARDS and VILI from a mechanical stress-strain perspective. Although inflammation is also an important component of VILI pathology, it is secondary to the mechanical damage caused by excessive strain. The mechanical breath will be deconstructed to show that multiple parameters that comprise the breath-airway pressure, flows, volumes, and the duration during which they are applied to each breath-are critical to lung injury and protection. Specifically, the mechanisms by which a properly set mechanical breath can reduce the development of excessive fluid flux and pulmonary edema, which are a hallmark of ARDS pathology, are reviewed. Using our knowledge of how multiple parameters in the mechanical breath affect lung physiology, the optimal combination of pressures, volumes, flows, and durations that should offer maximum lung protection are postulated.
机译:最早描述现在称为急性呼吸窘迫综合征(ARDS)是一种高度致命的双重肺炎。 Ashbaugh及其同事(Ashbaugh DG,Bigelow DB,Petty T1,Levine是柳叶呤2:319-323,1967)在1967年正确鉴定了疾病。它们的初步研究显示了机械通气与阳性呼气压力的积极影响(在发现不正确使用的机械通气可能导致二次呼吸机诱导的肺损伤(VILI)时,偷窥是湿润的偷窥者,从而大大加剧了ARDS死亡率。该合成报告将从机械应力 - 应变的角度审查ARDS和VILI的病理生理学。虽然炎症也是Vili病理学的重要组成部分,但它是由过量菌株引起的机械损伤的次级。机械呼吸将被解构以表明包括呼吸气道压力,流量,体积的多种参数,以及它们在每个呼吸上施加的持续时间对肺损伤和保护至关重要。具体地,综述了妥善机械呼吸可以减少过量流体助熔剂和肺水肿的发展的机制,这些方法是作为ARDS病理学的标志。利用我们了解机械呼吸如何影响肺生理学的多种参数,假设应提供最大肺保护的压力,卷,流量和持续时间的最佳组合。

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