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A framework for computational fluid dynamic analyses of patient-specific stented coronary arteries from optical coherence tomography images

机译:从光学相干断层扫描图像对患者特定的冠状动脉支架进行计算流体动力学分析的框架

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摘要

The clinical challenge of percutaneous coronary interventions (PCI) is highly dependent on the recognition of the coronary anatomy of each individual. The classic imaging modality used for PCI is angiography, but advanced imaging techniques that are routinely performed during PCI, like optical coherence tomography (OCT), may provide detailed knowledge of the pre-intervention vessel anatomy as well as the post-procedural assessment of the specific stent-to-vessel interactions. Computational fluid dynamics (CFD) is an emerging investigational tool in the setting of optimization of PCI results. In this study, an OCT-based reconstruction method was developed for the execution of CFD simulations of patient-specific coronary artery models which include the actual geometry of the implanted stent. The method was applied to a rigid phantom resembling a stented segment of the left anterior descending coronary artery. The segmentation algorithm was validated against manual segmentation. A strong correlation was found between automatic and manual segmentation of lumen in terms of area values. Similarity indices resulted >96% for the lumen segmentation and >77% for the stent strut segmentation. The 3D reconstruction achieved for the stented phantom was also assessed with the geometry provided by X-ray computed micro tomography scan, used as ground truth, and showed the incidence of distortion from catheter-based imaging techniques. The 3D reconstruction was successfully used to perform CFD analyses, demonstrating a great potential for patient-specific investigations. In conclusion, OCT may represent a reliable source for patient-specific CFD analyses which may be optimized using dedicated automatic segmentation algorithms.
机译:经皮冠状动脉介入治疗(PCI)的临床挑战高度依赖于每个个体的冠状动脉解剖结构的识别。用于PCI的经典成像方式是血管造影,但是在PCI期间常规执行的高级成像技术(如光学相干断层扫描(OCT))可以提供介入前血管解剖以及对血管介入的术后评估的详细知识。特定的支架间相互作用。计算流体动力学(CFD)是设置PCI结果最优化的新兴研究工具。在这项研究中,开发了一种基于OCT的重建方法来执行特定于患者的冠状动脉模型的CFD模拟,其中包括植入支架的实际几何形状。该方法应用于类似于左冠状动脉前降支支架段的刚性体模。分割算法已针对手动分割进行了验证。发现根据面积值在管腔的自动和手动分割之间存在很强的相关性。相似指数导致管腔分割> 96%,支架撑杆分割> 77%。支架幻影的3D重建也通过X射线计算机断层扫描提供的几何形状进行了评估,用作地面实况,并显示了基于导管的成像技术造成的畸变发生率。 3D重建成功地用于执行CFD分析,证明了针对患者特定研究的巨大潜力。总之,OCT可以代表特定于患者的CFD分析的可靠来源,可以使用专用的自动分段算法对其进行优化。

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