Benameur Said, Mignotte Max, Parent Stefan, Labelle Hubert, Skalli Wafa, de Guise Jacques
Laboratoire de recherche en imagerie et orthopédie, Centre de recherche, Centre hospitalier Universitaire de Montréal, Pavilion J.A. de Sève 1560, rue Sherbrooke est, Montréal, Que., Y-1615, Canada H2L 4M1.
Comput Med Imaging Graph. 2003 Sep-Oct;27(5):321-37. doi: 10.1016/s0895-6111(03)00019-3.
We propose a new 3D/2D registration method for vertebrae of the scoliotic spine, using two conventional radiographic views (postero-anterior and lateral), and a priori global knowledge of the geometric structure of each vertebra. This geometric knowledge is efficiently captured by a statistical deformable template integrating a set of admissible deformations, expressed by the first modes of variation in Karhunen-Loeve expansion, of the pathological deformations observed on a representative scoliotic vertebra population. The proposed registration method consists of fitting the projections of this deformable template with the preliminary segmented contours of the corresponding vertebra on the two radiographic views. The 3D/2D registration problem is stated as the minimization of a cost function for each vertebra and solved with a gradient descent technique. Registration of the spine is then done vertebra by vertebra. The proposed method efficiently provides accurate 3D reconstruction of each scoliotic vertebra and, consequently, it also provides accurate knowledge of the 3D structure of the whole scoliotic spine. This registration method has been successfully tested on several biplanar radiographic images and validated on 57 scoliotic vertebrae. The validation results reported in this paper demonstrate that the proposed statistical scheme performs better than other conventional 3D reconstruction methods.
我们提出了一种用于脊柱侧弯脊柱椎体的新型三维/二维配准方法,该方法使用两种传统的放射影像视图(前后位和侧位),以及每个椎体几何结构的先验全局知识。这种几何知识通过一个统计可变形模板有效地获取,该模板整合了一组可允许的变形,这些变形由在一组具有代表性的脊柱侧弯椎体上观察到的病理变形的卡尔胡宁-洛伊夫展开的第一主成分表示。所提出的配准方法包括将这个可变形模板的投影与相应椎体在两个放射影像视图上的初步分割轮廓进行拟合。三维/二维配准问题被表述为每个椎体的代价函数最小化,并使用梯度下降技术求解。然后逐个椎体地对脊柱进行配准。所提出的方法有效地提供了每个脊柱侧弯椎体的精确三维重建,因此,它也提供了整个脊柱侧弯脊柱三维结构的精确信息。这种配准方法已在多个双平面放射影像上成功测试,并在57个脊柱侧弯椎体上得到验证。本文报道的验证结果表明,所提出的统计方案比其他传统的三维重建方法表现更好。