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A robustness test of the Braided Device Foreshortening algorithm

机译:编织设备节距算法的鲁棒性测试

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Abstract Different computational methods have been recently proposed to simulate the virtual deployment of a braided stent inside a patient vasculature. Those methods are primarily based on the segmentation of the region of interest to obtain the local vessel morphology descriptors. The goal of this work is to evaluate the influence of the segmentation quality on the method named "Braided Device Foreshortening" (BDF). Methods We used the 3DRA images of 10 aneurysmatic patients (cases). The cases were segmented by applying a marching cubes algorithm with a broad range of thresholds in order to generate 10 surface models each. We selected a braided device to apply the BDF algorithm to each surface model. The range of the computed flow diverter lengths for each case was obtained to calculate the variability of the method against the threshold segmentation values. Results. An evaluation study over 10 clinical cases indicates that the final length of the deployed flow diverter in each vessel model is stable, shielding maximum difference of 11.19% in vessel diameter and maximum of 9.14% in the simulated stent length for the threshold values. The average coefficient of variation was found to be 4.08 %. Conclusion A study evaluating how the threshold segmentation affects the simulated length of the deployed FD, was presented. The segmentation algorithm used to segment intracranial aneurysm 3D angiography images presents small variation in the resulting stent simulation.
机译:摘要最近提出了多种计算方法来模拟编织支架在患者脉管系统内的虚拟部署。这些方法主要基于感兴趣区域的分割以获得局部血管形态学描述子。这项工作的目标是评估分割质量对名为“编织设备透视”(BDF)的方法的影响。方法我们使用了10例动脉瘤患者(病例)的3DRA图像。通过应用具有广泛阈值范围的行进立方体算法对案例进行细分,以便每个生成10个表面模型。我们选择了一个编织设备将BDF算法应用于每个表面模型。获得每种情况下计算出的分流器长度的范围,以计算该方法相对于阈值分割值的可变性。结果。超过10个临床案例的评估研究表明,每个血管模型中已部署的分流器的最终长度是稳定的,对于阈值,血管直径的最大差异为11.19%,模拟支架长度的最大值为9.14%。发现平均变异系数为4.08%。结论提出了一项评估阈值分割如何影响已部署FD的模拟长度的研究。用于分割颅内动脉瘤3D血管造影图像的分割算法在所得支架仿真中表现出很小的变化。

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