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Patient-Specific 3D Reconstruction of a Complete Lower Extremity from 2D X-rays

机译:特定于2D X射线的完整下肢的特定于患者的3D重建

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This paper introduces a solution that can robustly derive 3D models of musculoskeletal structures from 2D X-ray Images. The present method, as an integrated solution, consists of three components: (1) a musculoskeletal structure immobilization apparatus; (2) an X-ray image calibration phantom; and (3) a statistical shape model-based 2D-3D reconstruction algorithm. These three components are integrated in a systematic way in the present method to derive 3D models of any musculoskeletal structure from 2D X-ray Images in a functional position (e.g., weight-bearing position for lower limb). More specifically, the musculoskeletal structure immobilization apparatus will be used to rigidly fix the X-ray calibration phantom with respect to the underlying anatomy during the image acquisition. The calibration phantom then serves two purposes. For one side, the phantom will allow one to calibrate the projection parameters of any acquired X-ray image. For the other side, the phantom also allows one to track positions of multiple X-ray images of the underlying anatomy without using any additional positional tracker, which is a prerequisite condition for the third component to compute patient-specific 3D models from 2D X-ray images and the associated statistical shape models. Validation studies conducted on both simulated X-ray images and on patients' X-ray data demonstrate the efficacy of the present solution.
机译:本文介绍了一种能够从2D X射线图像中鲁布利地推导出肌肉骨骼结构的3D模型。本方法,作为集成溶液,由三种组分组成:(1)肌肉骨骼结构固定装置; (2)X射线图像校准幻像; (3)基于统计形状模型的2D-3D重建算法。这三个组分以本方法以系统的方式集成,以从功能位置(例如,用于下肢的负重位置,从2D X射线图像中导出任何肌肉骨骼结构的3D模型。更具体地,肌肉骨骼结构固定装置将用于在图像采集期间对底层解剖结构刚性地固定X射线校准幻像。然后校准幻像用于两个目的。对于一侧,幻像将允许一个校准任何获取的X射线图像的投影参数。对于另一边,幻像还允许一个人追踪底层解剖学的多个X射线图像的位置,而不使用任何附加的位置跟踪器,这是第三组分的先决条件,以计算2D X-计算患者特定的3D模型。射线图像和相关的统计形状模型。在模拟X射线图像和患者X射线数据上进行的验证研究证明了本发明的解决方案的功效。

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