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首页> 外文期刊>Medical Physics >Automated localization of implanted seeds in 3D TRUS images used for prostate brachytherapy.
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Automated localization of implanted seeds in 3D TRUS images used for prostate brachytherapy.

机译:在用于前列腺近距离放射治疗的3D TRUS图像中自动定位植入的种子。

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摘要

An algorithm has been developed in this paper to localize implanted radioactive seeds in 3D ultrasound images for a dynamic intraoperative brachytherapy procedure. Segmentation of the seeds is difficult, due to their small size in relatively low quality of transrectal ultrasound (TRUS) images. In this paper, intraoperative seed segmentation in 3D TRUS images is achieved by performing a subtraction of the image before the needle has been inserted, and the image after the seeds have been implanted. The seeds are searched in a "local" space determined by the needle position and orientation information, which are obtained from a needle segmentation algorithm. To test this approach, 3D TRUS images of the agar and chicken tissue phantoms were obtained. Within these phantoms, dummy seeds were implanted. The seed locations determined by the seed segmentation algorithm were compared with those obtained from a volumetric cone-beam flat-panel micro-CT scanner and human observers. Evaluation of the algorithm showed that the rms error in determining the seed locations using the seed segmentation algorithm was 0.98 mm in agar phantoms and 1.02 mm in chicken phantoms.
机译:本文开发了一种算法,用于在3D超声图像中定位植入的放射性种子,以进行动态术中近距离放射治疗程序。由于种子的尺寸较小,而经直肠超声(TRUS)图像的质量相对较低,因此很难进行种子分割。在本文中,通过对插入针头之前的图像和植入种子后的图像进行减去,可以实现3D TRUS图像中的术中种子分割。在由针位置和方向信息确定的“局部”空间中搜索种子,该位置是从针分割算法中获得的。为了测试这种方法,获得了琼脂和鸡组织模型的3D TRUS图像。在这些幻影中,植入了假种子。将通过种子分割算法确定的种子位置与从体积锥束平板微CT扫描仪和人工观察者获得的种子位置进行比较。该算法的评估表明,使用种子分割算法确定种子位置时的均方根误差在琼脂幻影中为0.98 mm,在鸡幻影中为1.02 mm。

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