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首页> 外文期刊>Mechanics research communications >In-silico assessment of the effects of right ventricular assist device on pulmonary arterial hypertension using an image based biventricular modeling framework
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In-silico assessment of the effects of right ventricular assist device on pulmonary arterial hypertension using an image based biventricular modeling framework

机译:基于基于图像的双心质模拟框架的右心室辅助装置对右心室辅助装置对肺动脉高血压的影响

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Pulmonary arterial hypertension (PAH) is a heart disease that is characterized by an abnormally high pressure in the pulmonary artery (PA). While right ventricular assist device (RVAD) has been considered recently as a treatment option for end-stage PAH patients, its effects on biventricular mechanics are, however, largely unknown. To address this issue, we developed an image-based modeling framework consisting of a biventricular finite element (FE) model that is coupled to a lumped model describing the pulmonary and systemic circulations in a closed-loop system. The biventricular geometry was reconstructed from the magnetic resonance images of two PAH patients showing different degree of RV remodeling and a normal subject. The framework was calibrated to match patient-specific measurements of the left ventricular (LV) and RV volume and pressure waveforms. An RVAD model was incorporated into the calibrated framework and simulations were performed with different pump speeds. Results showed that RVAD unloads the RV, improves cardiac output and increases septum curvature, which are more pronounced in the PAH patient with severe RV remodeling. These improvements, however, are also accompanied by an adverse increase in the PA pressure. These results suggest that the RVAD implantation may need to be optimized depending on disease progression. (C) 2019 Elsevier Ltd. All rights reserved.
机译:肺动脉高压(PAH)是一种心脏病,其特征在于肺动脉(PA)中的异常高压。虽然最近被认为是末期PAH患者的治疗选择的右心室辅助装置(RVAD),但其对双心电线的影响是在很大程度上未知的。为了解决这个问题,我们开发了一种基于图像的建模框架,该框架组成,该框架组成,该框架包括与描述闭环系统中的肺部和系统循环的集总型模型耦合的基于的基于型材的建模框架。从两个PAH患者的磁共振图像重建了双心性几何形状,显示不同程度的RV重塑和正常对象。该框架被校准以匹配左心室(LV)和RV体积和压力波形的患者特异性测量。 RVAD模型被纳入校准的框架,用不同的泵速进行模拟。结果表明,RVAD卸载RV,改善心脏输出并增加隔膜曲率,其在具有严重的RV重塑中的PAH患者中更加明显。然而,这些改进也伴随着PA压力的不利增加。这些结果表明RVAD植入可能需要根据疾病进展而优化。 (c)2019年elestvier有限公司保留所有权利。

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