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首页> 外文期刊>Respiratory care >Understanding Pulmonary Stress-Strain Relationships in Severe ARDS and Its Implications for Designing a Safer Approach to Setting the Ventilator
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Understanding Pulmonary Stress-Strain Relationships in Severe ARDS and Its Implications for Designing a Safer Approach to Setting the Ventilator

机译:了解严重ARDS中的肺应力 - 应变关系及其对设计更安全的方法来设置呼吸机的影响

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摘要

This review describes the current understanding of the lungs' response to deforming stress under conditions of both normal physiology and acute lung injury. Several limiting assumptions are needed to infer lung parenchymal stress and strain from airway pressure, volume, and flow data from mechanically ventilated patients with injured lungs. These assumptions include the effects of the chest wall on lung-surface pressure, its topographical distribution, and the effects of non-uniform tissue properties on local parenchymal stresses. In addition, there is a spectrum of biophysical lung injury mechanisms that involves normal as well as tangential alveolar wall stresses. To these are added important secondary effects on pulmonary vascular resistance and right heart function. Understanding both the assumptions of lung mechanics and the scope of injury mechanisms operating during ARDS is necessary to interpret the results of clinical trials that inform prevailing ventilator-management guidelines. The implications issuing from these 3 topics inform a safer approach to setting and adjusting the ventilator to minimize the risk of ventilator-induced lung injury. This is enumerated in a 5-step approach that can be used to guide ventilator management of unstable patients with severe lung injury.
机译:本综述描述了目前在正常生理和急性肺损伤的条件下对肺部对变形应力的反应。需要几种限制假设来推断出从气道压力,体积和来自机械通风肺部患者的气道压力,体积和流量数据的肺实质应激和菌株。这些假设包括胸壁对肺表面压力的影响,其平面分布以及非均匀组织特性对局部实质应激的影响。此外,存在涉及正常的生物物理肺损伤机制的光谱和切向肺泡壁应力。对于这些,对肺血管抗性和右心功能的重要次要作用。了解肺部力学的假设以及在ARDS期间运作的伤害机制的范围是为了解释临床试验的结果,可通知普遍的呼吸机管理指南。发出从这3个主题发出的影响通知了更安全的方法来设置和调整呼吸机,以最大限度地减少呼吸机引起的肺损伤的风险。这是在5步的方法中列举,可用于引导不稳定肺损伤患者的呼吸机管理。

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