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Parametric modelling and segmentation of vertebral bodies in 3D CT and MR spine images.

机译:三维CT与脊柱图像中椎体的参数建模与分割。

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摘要

Accurate and objective evaluation of vertebral deformations is of significant importance in clinical diagnostics and therapy of pathological conditions affecting the spine. Although modern clinical practice is focused on three-dimensional (3D) computed tomography (CT) and magnetic resonance (MR) imaging techniques, the established methods for evaluation of vertebral deformations are limited to measuring deformations in two-dimensional (2D) x-ray images. In this paper, we propose a method for quantitative description of vertebral body deformations by efficient modelling and segmentation of vertebral bodies in 3D. The deformations are evaluated from the parameters of a 3D superquadric model, which is initialized as an elliptical cylinder and then gradually deformed by introducing transformations that yield a more detailed representation of the vertebral body shape. After modelling the vertebral body shape with 25 clinically meaningful parameters and the vertebral body pose with six rigid body parameters, the 3D model is aligned to the observed vertebral body in the 3D image. The performance of the method was evaluated on 75 vertebrae from CT and 75 vertebrae from T(2)-weighted MR spine images, extracted from the thoracolumbar part of normal and pathological spines. The results show that the proposed method can be used for 3D segmentation of vertebral bodies in CT and MR images, as the proposed 3D model is able to describe both normal and pathological vertebral body deformations. The method may therefore be used for initialization of whole vertebra segmentation or for quantitative measurement of vertebral body deformations.
机译:椎体变形的准确性和客观评估对于影响脊柱的病理条件的临床诊断和治疗具有重要意义。尽管现代临床实践集中在三维(3D)计算断层扫描(CT)和磁共振(MR)成像技术上,但是用于评估椎体变形的建立方法限于测量二维(2D)X射线中的变形图片。在本文中,我们提出了一种通过3D中椎体的有效建模和分割来定量描述椎体变形的方法。从3D超级型模型的参数评估变形,其被初始化为椭圆圆柱,然后通过引入椎体形状的更详细表示的变换来逐渐变形。在用25个临床上有意义的参数和六个刚体参数的椎体姿势建模椎体形状之后,3D模型与观察到的3D图像中观察到的椎体对齐。根据来自T(2)-weigucted MR脊柱图像的CT和75椎骨的75个椎骨评估该方法的性能,从正常和病理刺的胸腰部部分提取。结果表明,该方法可用于CT和MR图像中椎体的3D分割,因为所提出的3D模型能够描述正常和病理椎体变形。因此,该方法可以用于初始化整个椎骨分割或用于椎体变形的定量测量。

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