Hemodynamic Analysis in Aortic Dilatation after Arterial Switch Operation for Patients with Transposition of Great Arteries Using Computational Fluid Dynamics.

IF 2.4 3区 医学 Q2 CARDIAC & CARDIOVASCULAR SYSTEMS
Woo Young Park, Sang Yun Lee, Jongmin Seo
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Abstract

After an arterial switch operation for complete transposition of the great arteries, neo-aortic root dilatation occurs, with unclear hemodynamic effects. This study analyzes three groups (severe dilation, mild dilation, and normal) using computational fluid dynamics (CFD) on cardiac CT scans. Aortic arch angles in severe (median 72.3, range: 68.5-77.2) and mild dilation (76.6, 71.1-85.2) groups are significantly smaller than the normal group (97.3, 87.4-99.0). In the normal and mild dilatation groups, Wall Shear Stress (WSS) exhibits a consistent pattern: it is lowest at the aortic root, gradually increases until just before the bend in the aortic arch, peaks, and then subsequently decreases. However, severe dilation shows disrupted WSS patterns, notably lower in the distal ascending aorta, attributed to local recirculation. This unique WSS pattern observed in severely dilated patients, especially in the transverse aorta. CFD plays an essential role in comprehensively studying the pathophysiology underlying aortic dilation in this population.

利用计算流体力学分析大动脉错位患者动脉转换手术后主动脉扩张的血流动力学。
完全性大动脉转位的动脉转换手术后,会出现新主动脉根部扩张,对血流动力学的影响尚不明确。本研究利用心脏 CT 扫描的计算流体动力学(CFD)分析了三个组别(重度扩张、轻度扩张和正常)。重度(中位 72.3,范围:68.5-77.2)和轻度扩张组(76.6,71.1-85.2)的主动脉弓角度明显小于正常组(97.3,87.4-99.0)。在正常组和轻度扩张组中,壁剪应力(WSS)表现出一致的模式:在主动脉根部最低,逐渐升高直到主动脉弓弯曲之前,达到峰值,然后降低。然而,严重扩张会破坏 WSS 模式,尤其是升主动脉远端较低,这归因于局部再循环。这种独特的 WSS 模式可在严重扩张的患者中观察到,尤其是在横主动脉中。CFD 在全面研究这类人群主动脉扩张的病理生理学方面起着至关重要的作用。
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来源期刊
Journal of Cardiovascular Translational Research
Journal of Cardiovascular Translational Research CARDIAC & CARDIOVASCULAR SYSTEMS-MEDICINE, RESEARCH & EXPERIMENTAL
CiteScore
6.10
自引率
2.90%
发文量
148
审稿时长
6-12 weeks
期刊介绍: Journal of Cardiovascular Translational Research (JCTR) is a premier journal in cardiovascular translational research. JCTR is the journal of choice for authors seeking the broadest audience for emerging technologies, therapies and diagnostics, pre-clinical research, and first-in-man clinical trials. JCTR''s intent is to provide a forum for critical evaluation of the novel cardiovascular science, to showcase important and clinically relevant aspects of the new research, as well as to discuss the impediments that may need to be overcome during the translation to patient care.
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