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Strategy for analysis of flow diverting devices based on multi-modality image-based modeling

机译:基于多模态图像建模的分流装置分析策略

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摘要

Quantification and characterization of the hemodynamic environment created after flow diversion treatment of cerebral aneurysms is important to understand the effects of flow diverters and their interactions with the biology of the aneurysm wall and the thrombosis process that takes place subsequently. This paper describes the construction of multi-modality image-based subject-specific CFD models of experimentally created aneurysms in rabbits and subsequently treated with flow diverters. Briefly, anatomical models were constructed from 3D rotational angiography images, flow conditions were derived from Doppler ultrasound measurements, stent models were created and virtually deployed, and the results were compared to in vivo digital subtraction angiography and Doppler ultrasound images. The models were capable of reproducing in vivo observations, including velocity waveforms measured in the parent artery, peak velocity values measured in the aneurysm, and flow structures observed with digital subtraction angiography before and after deployment of flow diverters. The results indicate that regions of aneurysm occlusion after flow diversion coincide with slow and smooth flow patterns, while regions still permeable at the time of animal sacrifice were observed in parts of the aneurysm exposed to larger flow activity, i.e. higher velocities, more swirling and more complex flow structures.
机译:量化和表征脑动脉瘤分流治疗后产生的血液动力学环境,对于了解分流器的作用及其与动脉瘤壁生物学以及随后发生的血栓形成过程的相互作用至关重要。本文描述了实验中在兔中创建的多模态基于图像的特定于受试者的CFD模型的构建,随后用分流器对其进行了处理。简而言之,从3D旋转血管造影图像构建解剖模型,从多普勒超声测量中得出血流情况,创建并虚拟部署支架模型,并将结果与​​体内数字减影血管造影和多普勒超声图像进行比较。该模型能够重现体内的观察结果,包括在亲代动脉中测得的速度波形,在动脉瘤中测得的峰值速度值以及数字减影血管造影术在部署分流器前后所观察到的血流结构。结果表明,分流后的动脉瘤闭塞区域与缓慢而平滑的血流模式相吻合,而在动物处死时,在暴露于较大流量活动(即更高的速度,更大的旋涡和更多)的部分动脉瘤中观察到了仍可渗透的区域。复杂的流动结构。

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