Amat di San Filippo Chiara, Fichtinger Gabor, Morris William James, Salcudean Septimiu E, Dehghan Ehsan, Fallavollita Pascal
Technical University of Munich, Munich, Germany,
Int J Comput Assist Radiol Surg. 2014 Sep;9(5):769-76. doi: 10.1007/s11548-014-0983-2. Epub 2014 Feb 7.
Dynamic dosimetry is becoming the standard to evaluate the quality of radioactive implants during brachytherapy. For this, it is essential to obtain a 3D visualization of the implanted seeds and their relative position to the prostate. A method was developed to obtain a robust and precise segmentation of seeds in C-arm images, and this approach was tested using clinical datasets.
A region-based implicit active contour approach was used to delineate implanted seeds. Then, a template-based matching was employed to segment iodine implants whereas a K-means algorithm is implemented to resolve palladium seed clusters. To validate the method, 55 C-arm images from 10 patients were used for the segmentation of iodine sources, whereas 225 C-arm images from 16 patients were used for the palladium case.
Compared to manual ground truth segmentation of 6,002 iodine seeds and 15,354 palladium seeds, 98.7 % of iodine sources were automatically detected and declustered showing a false-positive rate of only 1.7 %. A total of 98.7 % of palladium sources were automatically detected and declustered with a false-positive rate of only 2.0 %.
An automated segmentation method was developed that is able to perform the identification and annotation processes of seeds on par with a human expert. This method was shown to be robust and suitable for integration in the dynamic dosimetry workflow of prostate brachytherapy interventions.
动态剂量测定正成为近距离放射治疗期间评估放射性植入物质量的标准。为此,获取植入籽源及其相对于前列腺的相对位置的三维可视化至关重要。开发了一种方法来在C形臂图像中对籽源进行稳健且精确的分割,并使用临床数据集对该方法进行了测试。
使用基于区域的隐式活动轮廓方法来描绘植入的籽源。然后,采用基于模板的匹配来分割碘植入物,同时实施K均值算法来解析钯籽源簇。为验证该方法,10名患者的55张C形臂图像用于碘源的分割,而16名患者的225张C形臂图像用于钯的情况。
与6002个碘籽源和15354个钯籽源的手动真值分割相比,98.7%的碘源被自动检测并解簇,假阳性率仅为1.7%。总共98.7%的钯源被自动检测并解簇,假阳性率仅为2.0%。
开发了一种自动分割方法,该方法能够与人类专家相媲美地执行籽源的识别和标注过程。该方法被证明是稳健的,适用于集成到前列腺近距离放射治疗干预的动态剂量测定工作流程中。