医学
体外膜肺氧合
低氧血症
心源性休克
心脏病学
心室
体外循环
麻醉
内科学
心肌梗塞
作者
Sacha Rozencwajg,Eric L. Wu,Silver Heinsar,Michael Stevens,Josh Chinchilla,John F. Fraser,Jo P. Pauls
出处
期刊:Perfusion
[SAGE Publishing]
日期:2022-01-17
卷期号:39 (1): 66-75
被引量:10
标识
DOI:10.1177/02676591211056567
摘要
Peripheral veno-arterial extracorporeal membrane oxygenation (VA ECMO) creates a retrograde flow along the aorta competing with the left ventricle (LV) in the so-called 'mixing zone' (MZ). Detecting it is essential to understand which of the LV or the ECMO flow perfuses the upper body - particularly the brain and the coronary arteries - in case of differential hypoxemia (DH).We described a mock circulation loop (MCL) that enabled experimental research on DH. We recreated the three clinical situations relevant to clinicians: where the brain is either totally perfused by the ECMO or the LV or both. In a second step, we used this model to investigate two scenarios to diagnose DH: (i) pulse pressure and (ii) thermodilution via injection of cold saline in the ECMO circuit.The presented MCL was able to reproduce the three relevant mixing zones within the aortic arch, thus allowing to study DH. Pulse pressure was unable to detect location of the MZ. However, the thermodilution method was able to detect whether the brain was totally perfused by the ECMO or not.We validated an in-vitro differential hypoxemia model of cardiogenic shock supported by VA ECMO. This MCL could be used as an alternative to animal studies for research scenarios.
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