首页> 外文会议>Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC), 2011 IEEE >Distortion correction, geometric calibration, and volume reconstruction for an isocentric C-Arm X-Ray system
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Distortion correction, geometric calibration, and volume reconstruction for an isocentric C-Arm X-Ray system

机译:等中心C臂X射线系统的畸变校正,几何校准和体积重建

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In order to facilitate cone-beam CT using a mobile x-ray C-arm, accurate geometric calibration must be carried out. Such calibration requires a precise correction of x-ray image intensifier (II) distortion. Regional distortion correction (DC) was performed for the x-ray II using a planar grid phantom. The DC reduced the RMS error of known locations (or points) spanning the II field of view from 1.71 pixels to 0.63 pixels. For each projection, a six-ball calibration phantom was then used to determine the behavior of 9 geometric-calibration parameters during a 360 ° scan of the phantom, using a direct calibration method in the literature. These parameters were subsequently used in a modified Feldkamp (FDK) filtered back projection algorithm to achieve 3D volume reconstruction. Without the correction of II distortion the geometric calibration parameters showed the addition of incorrect structured behavior attributed to distortion while the reconstructed image was observed to be noisier when compared to the calibration and reconstruction when DC was incorporated. Further, a control was implemented using a distortion free digital flat panel detector. The reconstruction using the control was seen to have improved quality but was comparable to the quality of the distortion corrected x-ray II reconstruction.
机译:为了便于使用移动X射线C型臂进行锥束CT检查,必须进行精确的几何校准。这种校准需要精确校正X射线图像增强器(II)的畸变。使用平面网格体模对X射线II进行了区域畸变校正(DC)。 DC将跨越II视场的已知位置(或点)的RMS误差从1.71像素减小到0.63像素。对于每个投影,然后使用文献中的直接校准方法,使用六球校准模型来确定模型在360°扫描过程中9个几何校准参数的行为。这些参数随后用于改进的Feldkamp(FDK)滤波反投影算法中,以实现3D体积重建。如果不对II失真进行校正,则几何校正参数会显示出归因于失真的不正确的结构行为,而与使用DC进行校正和重建相比,重建图像的噪声更大。此外,使用无失真数字平板检测器来实现控制。可以看出,使用该控件的重建质量有所提高,但与失真校正的X射线II重建质量相当。

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