首页> 外文会议>Conference on Medical Imaging 2008: Visualization, Image-Guided Procedures, and Modeling; 20080217-19; San Diego,CA(US) >Automatic Needle Segmentation in 3D Ultrasound Images Using 3D Improved Hough Transform
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Automatic Needle Segmentation in 3D Ultrasound Images Using 3D Improved Hough Transform

机译:使用3D改进的Hough变换对3D超声图像进行自动针头分割

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3D ultrasound (US) is a new technology that can be used for a variety of diagnostic applications, such as obstetrical, vascular, and urological imaging, and has been explored greatly potential in the applications of image-guided surgery and therapy. Uterine adenoma and uterine bleeding are the two most prevalent diseases in Chinese woman, and a minimally invasive ablation system using a needle-like RF button electrode is widely used to destroy tumor cells or stop bleeding. To avoid accidents or death of the patient by inaccurate localizations of the electrode and the tumor position during treatment, 3D US guidance system was developed. In this paper, a new automated technique, the 3D Improved Hough Transform (3DIHT) algorithm, which is potentially fast, accurate, and robust to provide needle segmentation in 3D US image for use of 3D US imaging guidance, was presented. Based on the coarse-fine search strategy and a four parameter representation of lines in 3D space, 3DIHT algorithm can segment needles quickly, accurately and robustly. The technique was evaluated using the 3D US images acquired by scanning a water phantom. The segmentation position deviation of the line was less than 2mm and angular deviation was much less than 2°. The average computational time measured on a Pentium IV 2.80GHzPC computer with a 381 × 381 × 250 image was less than 2s.
机译:3D超声(美国)是一项新技术,可用于多种诊断应用,例如产科,血管和泌尿科影像学,并且在图像引导的手术和治疗应用中已被挖掘出巨大的潜力。子宫腺瘤和子宫出血是中国女性中最普遍的两种疾病,使用针状RF按钮电极的微创消融系统被广泛用于破坏肿瘤细胞或止血。为了避免在治疗过程中电极和肿瘤位置的不正确定位而导致事故或患者死亡,开发了3D US引导系统。在本文中,提出了一种新的自动化技术,即3D改进霍夫变换(3DIHT)算法,该算法可能快速,准确且健壮,可以使用3D US成像指导在3D US图像中提供针头分割。 3DIHT算法基于粗精细搜索策略和3D空间中线的四参数表示,可以快速,准确且可靠地分割针。使用通过扫描水体模型获取的3D US图像对技术进行了评估。线的分割位置偏差小于2mm,角度偏差小于2°。在具有381×381×250图像的Pentium IV 2.80GHzPC计算机上测得的平均计算时间少于2s。

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