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首页> 外文期刊>BioMedical Engineering OnLine >Reproducibility of image-based computational models of intracranial aneurysm: a comparison between 3D rotational angiography, CT angiography and MR angiography
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Reproducibility of image-based computational models of intracranial aneurysm: a comparison between 3D rotational angiography, CT angiography and MR angiography

机译:基于图像的颅内动脉瘤计算模型的可重复性:3D旋转血管造影,CT血管造影和MR血管造影之间的比较

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Background Reconstruction of patient-specific biomechanical model of intracranial aneurysm has been based on different imaging modalities. However, different imaging techniques may influence the model geometry and the computational fluid dynamics (CFD) simulation. The aim of this study is to evaluate the differences of the morphological and hemodynamic parameters in the computational models reconstructed from computed tomography angiography (CTA), magnetic resonance angiography (MRA) and 3D rotational angiography (3DRA). Methods Ten patients with cerebral aneurysms were enrolled in the study. MRA, CTA and 3DRA were performed on all patients. For each patient, three patient-specific models were reconstructed respectively based on the three sets of imaging data of the patient. CFD simulations were performed on each model. Model geometry and hemodynamic parameters were compared between the three models. Results In terms of morphological parameters, by comparing CTA based models (CM) and 3DRA based models (DM) which were treated as the “standard models”, the aspect ratio had the minimum difference (Δ?=?8.3?±?1.72?%, P?=?0.953) and the surface distance was 0.25?±?0.07?mm. Meanwhile, by comparing MRA based models (MM) and DM, the size had the minimum difference (Δ?=?6.6?±?1.85?%, P?=?0.683) and the surface distance was 0.36?±?0.1?mm. In respect of hemodynamic parameters, all three models showed a similar distribution: low average WSS at the sack, high OSI at the body and high average WSSG at the neck. However, there was a large variation in the average WSS (Δ?=?34?±?5.13?% for CM, Δ?=?40.6?±?9.21?% for MM). Conclusion CTA and MRA have no significant differences in reproducing intracranial aneurysm geometry. The CFD results suggests there might be some significant differences in hemodynamic parameters between the three imaging-based models and this needs to be considered when interpreting the CFD results of different imaging-based models. If we only need to study the main flow patterns, three types of image-based model might be all suitable for patient-specific computational modeling studies.
机译:背景颅内动脉瘤的患者特异性生物力学模型的重建已基于不同的成像方式。但是,不同的成像技术可能会影响模型的几何形状和计算流体动力学(CFD)模拟。这项研究的目的是评估从计算机断层摄影血管造影(CTA),磁共振血管造影(MRA)和3D旋转血管造影(3DRA)重建的计算模型中形态和血液动力学参数的差异。方法对10例脑动脉瘤患者进行研究。所有患者均进行了MRA,CTA和3DRA检查。对于每位患者,根据患者的三组成像数据分别重建三个患者特定模型。在每个模型上执行CFD模拟。比较了三个模型的模型几何形状和血液动力学参数。结果在形态学参数方面,通过比较被视为“标准模型”的基于CTA的模型(CM)和基于3DRA的模型(DM),长宽比具有最小的差异(Δα=≤8.3≤±1.72≤Δ≤3.2)。 %,P≥0.953),表面距离为0.25±0.07mm。同时,通过比较基于MRA的模型(MM)和DM,尺寸具有最小的差异(Δ?=?6.6?±?1.85?%,P?=?0.683),表面距离为0.36?±?0.1?mm 。就血液动力学参数而言,所有三个模型均显示出相似的分布:麻袋处的平均WSS低,身体的OSI高,颈部的平均WSSG高。但是,平均WSS有很大的变化(对于CM,Δβ=≤34≤±5.13%,对于MM,Δβ=≤40.6≤±9.21%。)。结论CTA和MRA在复制颅内动脉瘤的几何形状方面无显着差异。 CFD结果表明,三种基于影像的模型之间的血液动力学参数可能存在显着差异,在解释不同基于影像的模型的CFD结果时需要考虑这一点。如果只需要研究主流模式,则三种基于图像的模型可能都适合于特定于患者的计算模型研究。

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