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On-the-fly geometrical calibration fine-tuning of a mobile C-arm CBCT system

机译:移动式C型臂CBCT系统的实时几何校准微调

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摘要

C-arm cone-beam computed tomography (CBCT) offers CT-like 3D imaging capabilities while being appropriate for interventional suites. 3D images are reconstructed based on 2D projections gathered during the rotation of the C-arm around the object under investigation. It is mandatory to provide accurate geometrical projection parameters for each acquired 2D image, otherwise significant CT artifacts may be induced in the reconstructed 3D volume. Usually, a pre-calibration (offline calibration) using an X-ray phantom is preformed under the assumption that the C-arm motion is reproducible. Thereby, stochastic misalignments due to the open design of mobile C-arm CBCT systems are not considered. In this article we introduce a novel online calibration algorithm to compensate stochastic mechanical inaccuracies. The performance of the proposed method is demonstrated on simulated and real data.
机译:C臂锥形束计算机断层扫描(CBCT)提供类似CT的3D成像功能,同时适合于介入套件。基于C臂围绕被检查物体旋转期间收集的2D投影,重建3D图像。必须为每个采集的2D图像提供准确的几何投影参数,否则可能会在重建的3D体积中引起明显的CT伪影。通常,在可重现C臂运动的前提下执行使用X射线体模的预校准(离线校准)。因此,不考虑由于移动C臂CBCT系统的开放式设计而引起的随机未对准。在本文中,我们介绍了一种新颖的在线校准算法来补偿随机机械误差。仿真和真实数据证明了该方法的性能。

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