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Towards patient-specific cardiovascular modeling system using the immersed boundary technique

机译:使用沉浸边界技术建立针对特定患者的心血管建模系统

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Background Previous research shows that the flow dynamics in the left ventricle (LV) reveal important information about cardiac health. This information can be used in early diagnosis of patients with potential heart problems. The current study introduces a patient-specific cardiovascular-modelling system (CMS) which simulates the flow dynamics in the LV to facilitate physicians in early diagnosis of patients before heart failure. Methods The proposed system will identify possible disease conditions and facilitates early diagnosis through hybrid computational fluid dynamics (CFD) simulation and time-resolved magnetic resonance imaging (4-D MRI). The simulation is based on the 3-D heart model, which can simultaneously compute fluid and elastic boundary motions using the immersed boundary method. At this preliminary stage, the 4-D MRI is used to provide an appropriate comparison. This allows flexible investigation of the flow features in the ventricles and their responses. Results The results simulate various flow rates and kinetic energy in the diastole and systole phases, demonstrating the feasibility of capturing some of the important characteristics of the heart during different phases. However, some discrepancies exist in the pulmonary vein and aorta flow rate between the numerical and experimental data. Further studies are essential to investigate and solve the remaining problems before using the data in clinical diagnostics. Conclusions The results show that by using a simple reservoir pressure boundary condition (RPBC), we are able to capture some essential variations found in the clinical data. Our approach establishes a first-step framework of a practical patient-specific CMS, which comprises a 3-D CFD model (without involving actual hemodynamic data yet) to simulate the heart and the 4-D PC-MRI system. At this stage, the 4-D PC-MRI system is used for verification purpose rather than input. This brings us closer to our goal of developing a practical patient-specific CMS, which will be pursued next. We anticipate that in the future, this hybrid system can potentially identify possible disease conditions in LV through comprehensive analysis and facilitates physicians in early diagnosis of probable cardiac problems.
机译:背景先前的研究表明,左心室(LV)的血流动力学揭示了有关心脏健康的重要信息。该信息可用于早期诊断有潜在心脏问题的患者。当前的研究引入了一种特定于患者的心血管建模系统(CMS),该系统可模拟LV中的血流动力学,以帮助医生在心力衰竭之前对患者进行早期诊断。方法该提议的系统将识别可能的疾病状况,并通过混合计算流体动力学(CFD)模拟和时间分辨磁共振成像(4-D MRI)促进早期诊断。该模拟基于3-D心脏模型,该模型可以使用沉浸边界方法同时计算流体和弹性边界运动。在此初步阶段,将使用4-D MRI进行适当的比较。这样可以灵活地研究心室中的血流特征及其反应。结果结果模拟了心脏舒张期和心脏收缩期的各种流速和动能,证明了在不同阶段捕获心脏某些重要特征的可行性。但是,在数值和实验数据之间,肺静脉和主动脉流速存在一些差异。在临床诊断中使用数据之前,进一步的研究对于调查和解决剩余问题至关重要。结论结果表明,通过使用简单的储层压力边界条件(RPBC),我们能够捕获临床数据中发现的一些基本变化。我们的方法建立了一个针对患者的实用CMS的第一步框架,该框架包括一个3-D CFD模型(尚不涉及实际的血液动力学数据)以模拟心脏和4-D PC-MRI系统。在此阶段,将4-D PC-MRI系统用于验证目的而不是输入。这使我们更接近开发实用的针对特定患者的CMS的目标,接下来将继续进行。我们预计,将来,这种混合系统可以通过综合分析潜在地确定左室的可能疾病状况,并帮助医生尽早诊断可能的心脏问题。

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