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Vascular segmentation in three-dimensional rotational angiography based on maximum intensity projections

机译:基于最大强度投影的三维旋转血管造影中的血管分割

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Three-dimensional rotational angiography (3D-RA) is a relatively new and promising technique for imaging blood vessels. In this paper, we propose a novel 3D-RA vascular segmentation algorithm, which is fully automatic and very computationally efficient, based on the maximum intensity projections (MIP) of 3D-RA images. Validation results on 13 clinical 3D-RA datasets reveal that, according to the agreement between the segmentation results and the ground truth, our method (a) outperforms both the maximum a posteriori-expectation maximization (MAP-EM)-based method and the MAP-Markov random field (MAP-MRF)-based segmentation method, and (b) works comparably to the optimal global thresholding method. Experimental results also show that our method can successfully segment major vascular structures in 3D-RA and produce a lower false positive rate than that of the MAP-EM-based and MAP-MRF-based methods.
机译:三维旋转血管造影(3D-RA)是用于血管成像的相对较新且很有前途的技术。在本文中,我们基于3D-RA图像的最大强度投影(MIP),提出了一种新颖的3D-RA血管分割算法,该算法是全自动的,并且计算效率很高。在13个临床3D-RA数据集上的验证结果表明,根据分割结果和地面真实性之间的一致性,我们的方法(a)优于基于后验期望最大化(MAP-EM)的最大方法和MAP -基于马尔可夫随机场(MAP-MRF)的分割方法,(b)与最佳全局阈值化方法可比。实验结果还表明,与基于MAP-EM和基于MAP-MRF的方法相比,我们的方法可以成功地分割3D-RA中的主要血管结构,并产生较低的假阳性率。

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