首页> 外文会议>Conference on Medical Imaging 2008: Imaging Processing; 20080217-19; San Diego,CA(US) >Bidirectional Segmentation of Prostate Capsule from Ultrasound Volumes: An Improved Strategy
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Bidirectional Segmentation of Prostate Capsule from Ultrasound Volumes: An Improved Strategy

机译:从超声体积双向分割前列腺胶囊:一种改进的策略。

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Prostate volume is an indirect indicator for several prostate diseases. Volume estimation is a desired requirement during prostate biopsy, therapy and clinical follow up. Image segmentation is thus necessary. Previously, discrete dynamic contour (DDC) was implemented in orthogonal unidirectional on the slice-by-slice basis for prostate boundary estimation. This suffered from the glitch that it needed stopping criteria during the propagation of segmentation procedure from slice-to-slice. To overcome this glitch, axial DDC was implemented and this suffered from the fact that central axis never remains fixed and wobbles during propagation of segmentation from slice-to-slice. The effect of this was a multi-fold reconstructed surface. This paper presents a bidirectional DDC approach, thereby removing the two glitches. Our bidirectional DDC protocol was tested on a clinical dataset on 28 3-D ultrasound image volumes acquired using side fire Philips transrectal ultrasound. We demonstrate the orthogonal bidirectional DDC strategy achieved the most accurate volume estimation compared with previously published orthogonal unidirectional DDC and axial DDC methods. Compared to the ground truth, we show that the mean volume estimation errors were: 18.48%, 9.21% and 7.82% for unidirectional, axial and bidirectional DDC methods, respectively. The segmentation architecture is implemented in Visual C++ in Windows environment.
机译:前列腺体积是几种前列腺疾病的间接指标。在前列腺活检,治疗和临床随访期间,体积估计是一个理想的要求。因此,图像分割是必要的。以前,在逐个切片的基础上以正交单向的方式实现离散动态轮廓(DDC),用于前列腺边界估计。这有一个小故障,即在切片过程从切片到切片的传播过程中需要停止条件。为了克服这种故障,实施了轴向DDC,这受到以下事实的困扰:在从切片到切片的分段传播过程中,中心轴永远不会保持固定和摆动。这样的效果是多层重建表面。本文提出了一种双向DDC方法,从而消除了两个毛刺。我们的双向DDC协议已在临床数据集上使用侧射Philips经直肠超声采集的28个3-D超声图像量进行了测试。我们证明了正交双向DDC策略与以前发布的正交单向DDC和轴向DDC方法相比实现了最准确的体积估计。与地面事实相比,我们发现,单向,轴向和双向DDC方法的平均体积估计误差分别为:18.48%,9.21%和7.82%。分割体系结构是在Windows环境中的Visual C ++中实现的。

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