Alveolar mechanics: A new concept in respiratory monitoring

Ehab Daoud, C. Franck
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Abstract

A detailed understanding of respiratory mechanics during mechanical ventilation aids diagnostic accuracy and facilitates close monitoring of patient progress, allowing individualized ventilator adjustments aimed at minimizing ventilator induced lung injury. Respiratory mechanics can be described in terms of total respiratory, lung, and chest wall components and include compliance, resistance and are dependent on tidal volume, airway pressures, and flow for calculation. The interplay between the respiratory mechanics and ventilator delivered volume, flow, and pressure have an important role in the development of ventilator induced lung injury. The knowledge of alveolar dynamics and mechanics in the critically ill are lacking with much information originating mainly from bench and animal models of healthy and injured lungs. In this article we introduce the concept of alveolar compliance, resistance that depend on measuring the trans-alveolar pressure using esophageal balloon manometry and alveolar tidal volume using volumetric capnometry. This may have multiple implications in the understanding of components of ventilator induced lung injury specifically alveolar stress, strain, and mechanical power. Further studies are warranted to further understanding the monitoring and usefulness of alveolar mechanics. Keywords: Alveolar compliance and resistance, alveolar tidal volume, trans-alveolar pressure, alveolar stress and strain, alveolar mechanical power
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肺泡力学:呼吸监测的一个新概念
对机械通气过程中呼吸力学的详细了解有助于诊断准确性,并有助于密切监测患者的进展,从而实现个性化的呼吸机调整,以最大限度地减少呼吸机引起的肺损伤。呼吸力学可以用呼吸、肺和胸壁的总成分来描述,包括顺应性、阻力,并依赖于潮气量、气道压力和流量进行计算。呼吸力学和呼吸机输送的体积、流量和压力之间的相互作用在呼吸机诱导的肺损伤的发展中起着重要作用。危重患者的肺泡动力学和力学知识缺乏,许多信息主要来源于健康和受伤肺的台架和动物模型。在这篇文章中,我们介绍了肺泡顺应性、阻力的概念,这些概念取决于使用食道球囊测压法测量跨肺泡压力和使用容量二氧化碳计测量肺泡潮气量。这可能对理解呼吸机诱导的肺损伤的组成部分,特别是肺泡应力、应变和机械力有多重影响。需要进一步的研究来进一步了解肺泡力学的监测和有用性。关键词:肺泡顺应性和阻力、肺泡潮气量、跨肺泡压力、肺泡应力和应变、肺泡机械能
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