首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Linking Physiological Biomarkers of Ventilator-Induced Lung Injury to a Rich-Get-Richer Mechanism of Injury Progression
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Linking Physiological Biomarkers of Ventilator-Induced Lung Injury to a Rich-Get-Richer Mechanism of Injury Progression

机译:将呼吸机诱导的肺损伤的生理生物标志物与富富有损伤的伤害进展机制联系起来

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摘要

Mechanical ventilation is a crucial tool in the management of acute respiratory distress syndrome, yet it may itself also further damage the lung in a phenomenon known as ventilator-induced lung injury (VILI). We have previously shown in mice that volutrauma and atelectrauma act synergistically to cause VILI. We have also postulated that this synergy arises because of a rich-get-richer mechanism in which repetitive lung recruitment generates initial small holes in the blood-gas barrier which are then expanded by over-distension in a manner that favors large holes over small ones. In order to understand the causal link between this process and the derangements in lung mechanics associated with VILI, we developed a mathematical model that incorporates both atelectrauma and volutrauma to predict how the propensity of the lung to derecruit depends on the accumulation of plasma-derived fluid and proteins in the airspaces. We found that the model accurately predicts derecruitment in mice with experimentally induced VILI.
机译:机械通气是急性呼吸窘迫综合征管理中的关键工具,但它本身也可能在称为通风机诱导的肺损伤(Vili)的现象中进一步损害肺部。我们之前在卷造厂和电能协同作用以引起维利的情况下表现出来。我们也提出了这种协同作用,因为富有的变富富裕的机制,其中重复肺招募在血气屏障中产生初始小孔,然后以较小的孔的方式通过过度扩散而扩展。为了理解与维利相关的肺部力学中的这种过程和紊乱之间的因果关系,我们开发了一种掺入电气和卷的数学模型,以预测肺部到Dercruit的倾向如何取决于等离子体衍生的流体的积累和空间中的蛋白质。我们发现该模型准确地预测了通过实验诱导的vili的小鼠中的杀伤性。

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