肺不张
医学
肺
薄壁组织
围手术期
机械通风
病理生理学
肺气压
麻醉
通风(建筑)
呼气末正压
重症监护医学
充氧
病理
呼吸生理学
气道
呼吸道
正压
免疫系统
呼吸道疾病
作者
Congli Zeng,David Lagier,Jae-Woo Lee,Marcos F. Vidal Melo
出处
期刊:Anesthesiology
[Lippincott Williams & Wilkins]
日期:2021-09-08
卷期号:136 (1): 181-205
被引量:165
标识
DOI:10.1097/aln.0000000000003943
摘要
Pulmonary atelectasis is common in the perioperative period. Physiologically, it is produced when collapsing forces derived from positive pleural pressure and surface tension overcome expanding forces from alveolar pressure and parenchymal tethering. Atelectasis impairs blood oxygenation and reduces lung compliance. It is increasingly recognized that it can also induce local tissue biologic responses, such as inflammation, local immune dysfunction, and damage of the alveolar-capillary barrier, with potential loss of lung fluid clearance, increased lung protein permeability, and susceptibility to infection, factors that can initiate or exaggerate lung injury. Mechanical ventilation of a heterogeneously aerated lung (e.g., in the presence of atelectatic lung tissue) involves biomechanical processes that may precipitate further lung damage: concentration of mechanical forces, propagation of gas-liquid interfaces, and remote overdistension. Knowledge of such pathophysiologic mechanisms of atelectasis and their consequences in the healthy and diseased lung should guide optimal clinical management.
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