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使用双重优化的高效3D多区域前列腺MRI分割

Efficient 3D multi-region prostate MRI segmentation using dual optimization.

作者信息

Qiu Wu, Yuan Jing, Ukwatta Eranga, Sun Yue, Rajchl Martin, Fenster Aaron

出版信息

Inf Process Med Imaging. 2013;23:304-15. doi: 10.1007/978-3-642-38868-2_26.

Abstract

Efficient and accurate extraction of the prostate, in particular its clinically meaningful sub-regions from 3D MR images, is of great interest in image-guided prostate interventions and diagnosis of prostate cancer. In this work, we propose a novel multi-region segmentation approach to simultaneously locating the boundaries of the prostate and its two major sub-regions: the central gland and the peripheral zone. The proposed method utilizes the prior knowledge of the spatial region consistency and employs a customized prostate appearance model to simultaneously segment multiple clinically meaningful regions. We solve the resulted challenging combinatorial optimization problem by means of convex relaxation, for which we introduce a novel spatially continuous flow-maximization model and demonstrate its duality to the investigated convex relaxed optimization problem with the region consistency constraint. Moreover, the proposed continuous max-flow model naturally leads to a new and efficient continuous max-flow based algorithm, which enjoys great advantages in numerics and can be readily implemented on GPUs. Experiments using 15 T2-weighted 3D prostate MR images, by inter- and intra-operator variability, demonstrate the promising performance of the proposed approach.

摘要

从3D磁共振图像中高效、准确地提取前列腺,尤其是其具有临床意义的子区域,在图像引导的前列腺干预和前列腺癌诊断中具有重要意义。在这项工作中,我们提出了一种新颖的多区域分割方法,用于同时定位前列腺及其两个主要子区域(中央腺体和外周带)的边界。所提出的方法利用空间区域一致性的先验知识,并采用定制的前列腺外观模型来同时分割多个具有临床意义的区域。我们通过凸松弛来解决由此产生的具有挑战性的组合优化问题,为此我们引入了一种新颖的空间连续流最大化模型,并证明其与具有区域一致性约束的研究凸松弛优化问题的对偶性。此外,所提出的连续最大流模型自然地导致了一种基于新的高效连续最大流的算法,该算法在数值计算方面具有很大优势,并且可以很容易地在GPU上实现。使用15幅T2加权3D前列腺磁共振图像进行的实验,通过操作者间和操作者内的变异性,证明了所提出方法的良好性能。

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