Betrouni N, Dewalle A S, Puech P, Vermandel M, Rousseau J
Inserm U703, Medical Technology Institute, CHRU Lille, France.
Comput Med Imaging Graph. 2008 Oct;32(7):622-30. doi: 10.1016/j.compmedimag.2008.07.002. Epub 2008 Aug 9.
In radiotherapy planning, target volumes and organs at risk delineation are a tedious and time-consuming task. In this paper we address a method to assist the radiologist in this task. We developed a 3D deformable model for prostate segmentation and used a seeded region growing algorithm for bladder and rectum delineation on MR images. Evaluation of the methods is made by comparison of the results to manual delineation in 24 patients. The following parameters were measured: volume ratio (V R) (automatic/manual), volume overlap (V O) (ratio of the volume of intersection to the volume of union, optimal value=1), and correctly delineated volume (V C) (percent ratio of the volume of intersection to the manual defined volume, optimal value=100). For prostate the V R, V O and V C were 1.13 (+/-0.1), 0.78 (+/-0.05) and 94.75 (+/-3.3), respectively. For rectum, the V R, V O and V C were 0.97 (+/-0.1), 0.78 (+/-0.06) and 86.52 (+/-5), respectively. V R, V O and V C were 0.95 (+/-0.03), 0.88 (+/-0.03) and 91.29 (+/-3.1) for bladder, respectively.
在放射治疗计划中,靶区体积和危及器官的勾画是一项繁琐且耗时的任务。在本文中,我们提出了一种方法来协助放射科医生完成这项任务。我们开发了一种用于前列腺分割的三维可变形模型,并在磁共振图像上使用种子区域生长算法来勾画膀胱和直肠。通过将24例患者的结果与手动勾画结果进行比较来评估这些方法。测量了以下参数:体积比(VR)(自动/手动)、体积重叠(VO)(交集体积与并集体积之比,最佳值 = 1)以及正确勾画体积(VC)(交集体积与手动定义体积的百分比,最佳值 = 100)。对于前列腺,VR、VO和VC分别为1.13(±0.1)、0.78(±0.05)和94.75(±3.3)。对于直肠,VR、VO和VC分别为0.97(±0.1)、0.78(±0.06)和86.52(±5)。对于膀胱,VR、VO和VC分别为0.95(±0.03)、0.88(±0.03)和91.29(±3.1)。