首页> 外文会议>Visualization, Image-Guided Procedures, and Display; Progress in Biomedical Optics and Imaging; vol.7,no.27 >Computational flow dynamics in patient specific model of cardiovascular system using CT and MRI
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Computational flow dynamics in patient specific model of cardiovascular system using CT and MRI

机译:使用CT和MRI的患者特定心血管系统模型的计算流动动力学

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After introduction on a new multislice computed tomography (MSCT) scanner, it has become possible to produce highspeed CT angiography (CTA) that selected preferred method for imaging in emergent vascular conditions. On the other hand, the imaging of blood vessels is often referred to as magnetic resonance angiography (MRA). Both of angiography offers the good quality of three-dimensional information of the vessels. In this study, patient specific model were reconstructed using multi-slice computed tomography (CT) and magnetic resonance imaging (MRI). The optimal transit time from intravenous injection to enhancement cardiovascular system was determined using a contrast bolus tracking technique with CT examination and phase contrast magnetic resonance angiography (PC-MRA). The purpose of this study was to describe a novel blood flow visualization and analysis in the human cardiovascular system in more detail by constructing actual three-dimensional (3D) flow and simulated model using Computational flow dynamics (CFD) methods. CFD streamlines were displayed using a special illumination technique with blood pressure display, which gives a much better spatial understanding of the field's structure than ordinary constant-colored lines. Real vector display using PC-MRA was also expressed to compare with the CFD simulation. On conclusion, Patient specific approach using actual blood flow with PC-MRA and CFD were effective to estimate blood flow state of the cardiovascular system.
机译:在新的多层计算机断层扫描(MSCT)扫描仪上引入之后,就有可能生产出高速CT血管造影(CTA),该技术选择了在紧急血管情况下成像的首选方法。另一方面,血管成像通常称为磁共振血管造影(MRA)。两种血管造影都可以提供良好的血管三维信息。在这项研究中,使用多层计算机断层扫描(CT)和磁共振成像(MRI)重建了患者特定模型。使用CT检查和相衬磁共振血管造影(PC-MRA)的对比推注跟踪技术确定从静脉注射到增强心血管系统的最佳转运时间。这项研究的目的是通过使用计算流动动力学(CFD)方法构建实际的三维(3D)流动和模拟模型来更详细地描述人类心血管系统中的新型血液流动可视化和分析。使用带有血压显示的特殊照明技术来显示CFD流线,与普通的恒定色线相比,它对场的结构具有更好的空间理解。还表达了使用PC-MRA的实际矢量显示,以与CFD仿真进行比较。总之,使用PC-MRA和CFD的实际血流的患者特定方法可以有效地估计心血管系统的血流状态。

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