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首页> 外文期刊>Medical Physics >Computer-assisted extraction of intracranial aneurysms on 3D rotational angiograms for computational fluid dynamics modeling.
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Computer-assisted extraction of intracranial aneurysms on 3D rotational angiograms for computational fluid dynamics modeling.

机译:计算机辅助提取颅内动脉瘤的3D旋转血管造影照片,用于计算流体动力学建模。

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摘要

PURPOSE: Three-dimensional rotational angiography (3DRA) is an evolving imaging procedure from traditional digital subtraction angiography and is gaining much interest for detecting intracranial aneurysms. Computational fluid dynamics (CFD) modeling plays an important role in understanding the biomechanical properties and in facilitating the prediction of aneurysm rupture. A successful computational study relies on an accurate description of the vascular geometry that is obtained from volumetric images. METHODS: The authors propose a new aneurysm segmentation algorithm to facilitate the study of CFD. This software combines a region-growing segmentation method with the 3D extension of a deformable contour based on a charged fluid model. A charged fluid model essentially consists of a set of charged elements that are governed by the nature of electrostatics. The approach requires no prior knowledge of anatomic structures and automatically segments the vasculature after the end-user selects a vessel section in a plane image. RESULTS: Experimental results on 15 cases indicate that aneurysm structures were effectively segmented and in good agreement with manual delineation outcomes. In comparison with the existing methods, the algorithm provided a much higher overlap index with respect to the ground truth. Furthermore, the outcomes of the proposed approach achieved a clean representation of vascular structures that is advantageous for hemodynamics analyses. CONCLUSIONS: A new aneurysm segmentation framework in an attempt to automatically segment vascular structures in 3DRA image volumes has been developed. The proposed algorithm demonstrated promising performance and unique characteristics to adequately segment aneurysms in 3DRA image volumes for further study in computational fluid dynamics.
机译:目的:三维旋转血管造影(3DRA)是传统数字减影血管造影技术的不断发展的成像方法,在颅内动脉瘤的检测中引起了广泛的关注。计算流体动力学(CFD)建模在理解生物力学特性和促进动脉瘤破裂的预测中起着重要作用。成功的计算研究依赖于对从体积图像获得的血管几何形状的准确描述。方法:作者提出了一种新的动脉瘤分割算法,以促进CFD的研究。该软件基于带电流体模型,将区域增长分割方法与可变形轮廓的3D扩展相结合。带电流体模型主要由一组受静电影响的带电元素组成。该方法不需要事先了解解剖结构,并在最终用户选择平面图像中的血管部分后自动分割脉管系统。结果:15例的实验结果表明,动脉瘤的结构被有效地分割,并与人工勾画的结果很好地吻合。与现有方法相比,该算法相对于地面真实性提供了更高的重叠指数。此外,提出的方法的结果实现了血管结构的清晰表示,这对于血液动力学分析是有利的。结论:一种新的动脉瘤分割框架,试图自动分割3DRA图像体积中的血管结构。所提出的算法展示了有前途的性能和独特的特性,可以在3DRA图像体积中充分分割动脉瘤,以便在计算流体动力学中进一步研究。

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