作者
Matthias AF Gsell, Christoph M Augustin, Anton J Prassl, Elias Karabelas, Joao F Fernandes, Marcus Kelm, Leonid Goubergrits, Titus Kuehne, Gernot Plank
发表日期
2018/12
期刊
International journal for numerical methods in biomedical engineering
卷号
34
期号
12
页码范围
e3147
简介
Introduction
Stenotic aortic valve disease (AS) causes pressure overload of the left ventricle (LV) that may trigger adverse remodeling and precipitate progression towards heart failure (HF). As myocardial energetics can be impaired during AS, LV wall stresses and biomechanical power provide a complementary view of LV performance that may aide in better assessing the state of disease.
Objectives
Using a high‐resolution electro‐mechanical (EM) in silico model of the LV as a reference, we evaluated clinically feasible Laplace‐based methods for assessing global LV wall stresses and biomechanical power.
Methods
We used N = 4 in silico finite element (FE) EM models of LV and aorta of patients suffering from AS. All models were personalized with clinical data under pretreatment conditions. Left ventricle wall stresses and biomechanical power were computed accurately from FE kinematic data and …
引用总数
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