主动脉弓
医学
主动脉压
升主动脉
主动脉
股动脉
血流动力学
深低温停循环
心脏病学
体外循环
血压
胸主动脉
拱门
主动脉弓中断
血流
灌注
循环系统
脑灌注压
外科
内科学
工程类
土木工程
作者
Beatrice De Lazzari,Massimo Capoccia,Nicholas Cheshire,Ulrich Rosendahl,Roberto Badagliacca,Claudio De Lazzari
标识
DOI:10.3390/bioengineering10010060
摘要
Aortic disease has a significant impact on quality of life. The involvement of the aortic arch requires the preservation of blood supply to the brain during surgery. Deep hypothermic circulatory arrest is an established technique for this purpose, although neurological injury remains high. Additional techniques have been used to reduce risk, although controversy still remains. A three-way cannulation approach, including both carotid arteries and the femoral artery or the ascending aorta, has been used successfully for aortic arch replacement and redo procedures. We developed circuits of the circulation to simulate blood flow during this type of cannulation set up. The CARDIOSIM© cardiovascular simulation platform was used to analyse the effect on haemodynamic and energetic parameters and the benefit derived in terms of organ perfusion pressure and flow. Our simulation approach based on lumped-parameter modelling, pressure–volume analysis and modified time-varying elastance provides a theoretical background to a three-way cannulation strategy for aortic arch surgery with correlation to the observed clinical practice.
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