论文标题
肺静脉构型对左心动动力学和大型队列中血栓形成的影响分析
In-silico analysis of the influence of pulmonary vein configuration on left atrial haemodynamics and thrombus formation in a large cohort
论文作者
论文摘要
心房颤动(AF)被认为是最常见的人类心律失常。在非浮雕AF中大约99%的血栓形成在左侧心脏附属物(LAA)中。研究表明,异常的LAA血液动力学和随后停滞的流量是触发凝块形成的因素。但是,LAA形态,血液模式和触发的关系尚未完全了解。此外,由于获取适当的数据的困难,尚未对肺静脉(PV)等结构对LA血液动力学的影响进行彻底研究。另一方面,硅内研究和流动模拟允许对血流动力学进行彻底的分析,从而在不同的边界条件下分析了血流模式的4D性质。但是,这些研究文献报告的病例数量减少是一个限制。这项工作的主要目的是研究PVS对左心房(LA)和LAA血流动力学的影响。计算流体动力学模拟是对52名患者进行的,这是文献中迄今为止最大的人群,其中分别研究了不同的参数:肺静脉方向和构型; LAA和LA卷及其比例;和流速度。我们的计算分析表明,正确的肺静脉高度和角度如何对LA血液动力学产生很大的影响。此外,我们发现LAA具有良好的弯曲,其尖端指向二尖瓣可能有助于促进流量停滞。
Atrial fibrillation (AF) is considered the most common human arrhythmia. Around 99\% of thrombi in non-valvular AF are formed in the left atrial appendage (LAA). Studies suggest that abnormal LAA haemodynamics and the subsequently stagnated flow are the factors triggering clot formation. However, the relation between LAA morphology, the blood pattern and the triggering is not fully understood. Moreover, the impact of structures such as the pulmonary veins (PVs) on LA haemodynamics has not been thoroughly studied due to the difficulties of acquiring appropriate data. On the other hand, in-silico studies and flow simulations allow a thorough analysis of haemodynamics, analysing the 4D nature of blood flow patterns under different boundary conditions. However, the reduced number of cases reported on the literature of these studies has been a limitation. The main goal of this work was to study the influence of PVs on left atrium (LA) and LAA haemodynamics. Computational fluid dynamics simulations were run on 52 patients, the largest cohort so far in the literature, where different parameters were individually studied: pulmonary veins orientation and configuration; LAA and LA volumes and its ratio; and flow velocities. Our computational analysis showed how the right pulmonary vein height and angulation have a great influence on LA haemodynamics. Additionally, we found that LAA with great bending with its tip pointing towards the mitral valve could contribute to favour flow stagnation.