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Rotation Center Calibration of CT System Based on Geometric Analysis and Iterative Correction

机译:基于几何分析和迭代校正的CT系统旋转中心校准

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CT, which is the abbreviation of computer tomography, plays an important role in our daily life in medical testing, industrial testing, security testing and air transportation. Due to the inevitable error in installing a CT system, the quality of the reconstructed images tends to fall. Therefore, the CT imaging system's parameters calibration is of great significance in particular situations. In this paper, the first-generation CT machine is used to calibrate the rotation center of the specific template by using the geometric analysis method, and the iterative correction method is used to further improve the accuracy of the rotation center, so as to improve the accuracy of image reconstruction and accuracy. In addition, the employment of filtered back projection algorithm completes the task of rebuilding the images and achieves a higher accuracy.
机译:CT是计算机断层扫描的缩写,在我们的日常生活中在医学测试,工业测试,安全测试和空运中起着重要作用。由于安装CT系统方面的不可避免的错误,重建图像的质量趋于下降。因此,CT成像系统的参数校准在特定情况下具有重要意义。在本文中,第一代CT机器用于通过使用几何分析方法校准特定模板的旋转中心,并且使用迭代校正方法来进一步提高旋转中心的准确性,从而改善图像重建和准确性的准确性。此外,过滤后投影算法的就业完成了重建图像的任务,并实现更高的准确性。

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