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Articulated Model Registration of MRI/X-Ray Spine Data

机译:MRI / X射线脊柱数据的铰接模型注册

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This paper presents a method based on articulated models for the registration of spine data extracted from multimodal medical images of patients with scoliosis. With the ultimate aim being the development of a complete geometrical model of the torso of a scoliotic patient, this work presents a method for the registration of vertebral column data using 3D magnetic resonance images (MRI) acquired in prone position and X-ray data acquired in standing position for five patients with scoliosis. The 3D shape of the vertebrae is estimated from both image modalities for each patient, and an articulated model is used in order to calculate intervertebral transformations required in order to align the vertebrae between both postures. Euclidean distances between anatomical landmarks are calculated in order to assess multimodal registration error. Results show a decrease in the Euclidean distance using the proposed method compared to rigid registration and more physically realistic vertebrae deformations compared to thin-plate-spline (TPS) registration thus improving alignment.
机译:本文介绍了一种基于关节模型的方法,用于从脊柱侧凸患者的多模式医学图像中提取的脊柱数据的登记。随着终极目标是开发脊生患者的躯干的完整几何模型,该作品提供了一种使用在易于位置和X射线数据中获取的3D磁共振图像(MRI)来注册椎体列数据的方法在脊柱侧凸患者的站立位置。从每个患者的两种图像模型估计椎骨的3D形状,并且使用铰接模型以计算所需的椎间变换,以便在两个姿势之间对齐椎骨。计算解剖标记之间的欧几里德距离是为了评估多模式登记误差。结果表明,与晶尺与薄板 - 样条(TPS)登记相比,使用该方法的刚性配准和更具物理椎骨变形的欧几里德距离减小,从而改善了对准。

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