Development of New Left Atrial Anatomical Models For the Study of the Left Atrial Appendage Implications in Atrial Fibrillation

A. Masci, Lorenzo Barone, F. Mazzotti, C. Tomasi, C. Corsi
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Abstract

Atrial fibrillation is associated with a five-fold increase of the stroke risk. Left atrial appendage (LAA) is the atrial site with the highest blood stasis risk, increasing thrombus formation and stroke. Recent studies have been focused on the association between the left atrial appendage anatomical features and the stroke risk. However, conflicting results have been published. In this context, clinical studies suggested the stroke risk stratification could be improved by using haemodynamics information on the left atrium and mainly on the left atrial appendage. Therefore, the aim of this study was the design and development of a method which enabled to reconstruct and generate several LA anatomical models, where each one was characterized by a different LAA morphology. These anatomical models represent the computational domain for the computational fluid dynamics simulations of the haemodynamics within the left atrium and LAA.
建立新的左心房解剖模型,研究左心房附件与房颤的关系
房颤与中风风险增加5倍有关。左心耳(LAA)是血瘀风险最高的心房部位,可增加血栓形成和脑卒中。近年来的研究主要集中在左心耳解剖特征与脑卒中风险之间的关系。然而,已经发表了相互矛盾的结果。在此背景下,临床研究表明,利用左心房的血流动力学信息,主要是左心耳的血流动力学信息,可以改善卒中风险分层。因此,本研究的目的是设计和开发一种方法,该方法能够重建和生成多个LAA解剖模型,其中每个模型都具有不同的LAA形态特征。这些解剖模型代表了左心房和左心房内血流动力学计算流体动力学模拟的计算域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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