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Quantification of intraventricular blood clot in MR-guided focused ultrasound surgery

机译:定量MR引导聚焦超声手术中腔内血栓

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Purpose: Intraventricular hemorrhage (IVH) affects nearly 15% of preterm infants. It can lead to ventricular dilation and cognitive impairment. To ablate IVH clots, MR-guided focused ultrasound surgery (MRgFUS) is investigated. This procedure requires accurate, fast and consistent quantification of ventricle and clot volumes. Methods: We developed a semi-autonomous segmentation (SAS) algorithm for measuring changes in the ventricle and clot volumes. Images are normalized, and then ventricle and clot masks are registered to the images. Voxels of the registered masks and voxels obtained by thresholding the normalized images are used as seed points for competitive region growing, which provides the final segmentation. The user selects the areas of interest for correspondence after thresholding and these selections are the final seeds for region growing. SAS was evaluated on an IVH porcine model. Results: SAS was compared to ground truth manual segmentation (MS) for accuracy, efficiency, and consistency. Accuracy was determined by comparing clot and ventricle volumes produced by SAS and MS, and comparing contours by calculating 95% Hausdorff distances between the two labels. In Two-One-Sided Test, SAS and MS were found to be significantly equivalent (p < 0.01). SAS on average was found to be 15 times faster than MS (p < 0.01). Consistency was determined by repeated segmentation of the same image by both SAS and manual methods, SAS being significantly more consistent than MS (p < 0.05). Conclusion: SAS is a viable method to quantify the IVH clot and the lateral brain ventricles and it is serving in a large-scale porcine study of MRgFUS treatment of IVH clot lysis.
机译:目的:脑室内出血(IVH)影响近15%的早产儿。它可以导致心室扩张和认知障碍。对于消化的IVH凝块,调查了MR-Guided Foced Ultrawram手术(MRGFU)。该过程需要准确,快速,一致地量化心室和凝块卷。方法:我们开发了一种半自动分割(SAS)算法,用于测量心室和凝块卷的变化。图像是归一化的,然后在映像中注册了脑室和凝块掩模。通过阈值下降归一化图像获得的登记掩模和体素的体素用作竞争地区生长的种子点,这提供了最终的分割。用户选择阈值后的对应区域的感兴趣区域,并且这些选择是区域生长的最终种子。 SAS在IVH猪模型上进行了评估。结果:将SAS与地面真理手动分段(MS)进行比较,以获得准确性,效率和一致性。通过比较SAS和MS产生的凝块和心室容积来确定精度,并通过计算两个标签之间的95%Hausdorff距离来比较轮廓。在双面测试中,发现SAS和MS显着等同(P <0.01)。 SAS平均被发现比MS快15倍(P <0.01)。通过SAS和手动方法反复分割相同图像的反复分割确定一致性,SAS显着比MS更加一致(P <0.05)。结论:SAS是量化IVH凝块和横向脑室的可行方法,它是在MRGFU治疗IVH凝块裂解的大规模猪研究中。

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