Wang Qian, Seghers Dieter, D'Agostino Emiliano, Maes Frederik, Vandermeulen Dirk, Suetens Paul, Hammers Alexander
Katholieke Universiteit Leuven, Faculties of Medicine and Engineering, Medical Image Computing - ESAT/PSI, University Hospital Gasthuisberg, Herestraat 49, B-3000 Leuven, Belgium.
Inf Process Med Imaging. 2005;19:689-700. doi: 10.1007/11505730_57.
In this paper, we evaluate different schemes for constructing a mean shape anatomical atlas for atlas-based segmentation of MR brain images. Each atlas is constructed and validated using a database of 20 images for which detailed manual delineations of 49 different subcortical structures are available. Atlas construction and atlas based segmentation are performed by non-rigid intensity-based registration using a viscous fluid deformation model with parameters that were optimally tuned for this particular task. The segmentation performance of each atlas scheme is evaluated on the same database using a leave-one-out approach and measured by the volume overlap of corresponding regions in the ground-truth manual segmentation and the warped atlas label image.
在本文中,我们评估了用于构建平均形状解剖图谱以进行磁共振脑图像基于图谱分割的不同方案。每个图谱都是使用包含20幅图像的数据库构建并验证的,该数据库提供了49种不同皮层下结构的详细手动勾勒。图谱构建和基于图谱的分割通过使用粘性流体变形模型的非刚性强度配准来执行,该模型的参数针对此特定任务进行了优化调整。每个图谱方案的分割性能在同一数据库上使用留一法进行评估,并通过真实手动分割和变形图谱标签图像中相应区域的体积重叠来衡量。