Staring Marius, Klein Stefan, Pluim Josien P W
University Medical Center Utrecht, Image Sciences Institute, Q0S.459, P.O. Box 85500, 3508 GA Utrecht, The Netherlands.
Med Phys. 2007 Nov;34(11):4098-108. doi: 10.1118/1.2776236.
Medical images that are to be registered for clinical application often contain both structures that deform and ones that remain rigid. Nonrigid registration algorithms that do not model properties of different tissue types may result in deformations of rigid structures. In this article a local rigidity penalty term is proposed which is included in the registration function in order to penalize the deformation of rigid objects. This term can be used for any representation of the deformation field capable of modelling locally rigid transformations. By using a B-spline representation of the deformation field, a fast algorithm can be devised. The proposed method is compared with an unconstrained nonrigid registration algorithm. It is evaluated on clinical three-dimensional CT follow-up data of the thorax and on two-dimensional DSA image sequences. The results show that nonrigid registration using the proposed rigidity penalty term is capable of nonrigidly aligning images, while keeping user-defined structures locally rigid.
用于临床应用而需配准的医学图像通常既包含会变形的结构,也包含保持刚性的结构。未对不同组织类型特性进行建模的非刚性配准算法可能会导致刚性结构变形。本文提出了一个局部刚性惩罚项,将其纳入配准函数以惩罚刚性物体的变形。该惩罚项可用于任何能够对局部刚性变换进行建模的变形场表示。通过使用变形场的B样条表示,可以设计出一种快速算法。将所提出的方法与无约束非刚性配准算法进行了比较。在胸部的临床三维CT随访数据和二维DSA图像序列上对其进行了评估。结果表明,使用所提出的刚性惩罚项进行非刚性配准能够在保持用户定义结构局部刚性的同时,对图像进行非刚性对齐。