医学
神经重症监护
病理生理学
机械通风
背景(考古学)
创伤性脑损伤
肺
重症监护医学
通风(建筑)
全身炎症
炎症
病理
麻醉
内科学
古生物学
工程类
精神科
生物
机械工程
作者
Mairi Ziaka,Aristomenis K. Exadaktylos
出处
期刊:Critical Care
[BioMed Central]
日期:2021-10-13
卷期号:25 (1): 358-358
被引量:111
标识
DOI:10.1186/s13054-021-03778-0
摘要
During the last decade, experimental and clinical studies have demonstrated that isolated acute brain injury (ABI) may cause severe dysfunction of peripheral extracranial organs and systems. Of all potential target organs and systems, the lung appears to be the most vulnerable to damage after brain injury (BI). The pathophysiology of these brain-lung interactions are complex and involve neurogenic pulmonary oedema, inflammation, neurodegeneration, neurotransmitters, immune suppression and dysfunction of the autonomic system. The systemic effects of inflammatory mediators in patients with BI create a systemic inflammatory environment that makes extracranial organs vulnerable to secondary procedures that enhance inflammation, such as mechanical ventilation (MV), surgery and infections. Indeed, previous studies have shown that in the presence of a systemic inflammatory environment, specific neurointensive care interventions-such as MV-may significantly contribute to the development of lung injury, regardless of the underlying mechanisms. Although current knowledge supports protective ventilation in patients with BI, it must be born in mind that ABI-related lung injury has distinct mechanisms that involve complex interactions between the brain and lungs. In this context, the role of extracerebral pathophysiology, especially in the lungs, has often been overlooked, as most physicians focus on intracranial injury and cerebral dysfunction. The present review aims to fill this gap by describing the pathophysiology of complications due to lung injuries in patients with a single ABI, and discusses the possible impact of MV in neurocritical care patients with normal lungs.
科研通智能强力驱动
Strongly Powered by AbleSci AI