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首页> 外文期刊>ASAIO journal >Hemodynamic consequences of thoracic artificial lung attachment configuration: a computational model.
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Hemodynamic consequences of thoracic artificial lung attachment configuration: a computational model.

机译:胸部人工肺附着结构的血流动力学后果:一种计算模型。

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摘要

A thoracic artificial lung (TAL) is being developed to assist treatment of acute and chronic pulmonary dysfunction. The TAL is attached directly to the pulmonary circulation. Depending on pathophysiology, the TAL may be attached in series with the natural lungs (NLs), in parallel with the NLs, or in an intermediate, hybrid configuration. We developed a computational model to study hemodynamic consequences of TAL attachment configuration under pathologic conditions. The pulmonary and systemic circulations, heart, and TAL are modeled as interconnected compliances and conductances, some valved. Time-varying cardiac compliance drives the system and generates pressures and flow rates. The model includes blood pressure feedback from the sympathetic nervous system, renin-angiotensin system, and renal volume control mechanism. We used previously published results from porcine experiments to verify model accuracy. We modeled normal physiology and four disease states. A hybrid configuration with 100% cardiac output through the TAL and 40% through the NLs would deliver maximal blood flow, 3.6 to 4.6 l/min, to the TAL and be tolerated by the right ventricle. Additionally, the model suggests that reducing the large "minor loss" resistances at the graft anastomoses to the pulmonary artery would improve the hemodynamics of all TAL attachment configurations.
机译:正在开发一种胸腔人工肺(TAL),以协助治疗急慢性肺功能不全。 TAL直接连接到肺循环。根据病理生理学,TAL可以与自然肺(NL)串联,与NL并联或以中间的混合配置连接。我们开发了一种计算模型来研究病理条件下TAL附着构型的血液动力学后果。肺和全身循环,心脏和TAL被建模为相互依从性和电导性,有些是带瓣的。随时间变化的心脏顺应性驱动系统并产生压力和流速。该模型包括来自交感神经系统,肾素-血管紧张素系统和肾体积控制机制的血压反馈。我们使用先前发表的猪实验结果来验证模型的准确性。我们模拟了正常的生理和四种疾病状态。混合配置具有100%通过TAL的心输出量和40%通过NL的心输出量,将向TAL提供最大血流量3.6至4.6 l / min,并被右心室耐受。此外,该模型表明,减少移植物吻合处对肺动脉的大“次要损失”阻力将改善所有TAL附着结构的血流动力学。

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