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Optimization of multi-image pose recovery of fluoroscope tracking (FTRAC) fiducial in an image-guided femoroplasty system

机译:图像引导股骨成形术系统中荧光镜跟踪(FTRAC)基准的多图像姿势恢复的优化

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Percutaneous femoroplasty [1], or femoral bone augmentation, is a prospective alternative treatment for reducing the risk of fracture in patients with severe osteoporosis. We are developing a surgical robotics system that will assist orthopaedic surgeons in planning and performing a patient-specific, augmentation of the femur with bone cement. This collaborative project, sponsored by the National Institutes of Health (NIH), has been the topic of previous publications [2],[3] from our group. This paper presents modifications to the pose recovery of a fluoroscope tracking (FTRAC) fiducial during our process of 2D/3D registration of X-ray intraoperative images to preoperative CT data. We show improved automata of the initial pose estimation as well as lower projection errors with the advent of a multi-image pose optimization step.
机译:经皮股骨成形术[1]或股骨增强,是一种前瞻性替代治疗,用于降低严重骨质疏松症患者骨折的风险。我们正在开发一种手术机器人系统,可以帮助矫形外科医生在规划和表演患者的患者的股骨水泥的增强。本协作项目由国家卫生研究院(NIH)赞助,一直是上一篇文章的主题[2],[3]。本文在我们的X射线朝内图像的2D / 3D登记过程中对术前CT数据进行了修改,对X射线术中图像的2D / 3D登记过程中的荧光探测(FTRAC)基准的修改。我们展示了初始姿势估计的改进自动机以及多图像姿势优化步骤的出现。

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