首页> 外文期刊>Medical Physics >A method based on moving least squares for XRII image distortion correction.
【24h】

A method based on moving least squares for XRII image distortion correction.

机译:一种基于移动最小二乘法的XRII图像失真校正方法。

获取原文
获取原文并翻译 | 示例
       

摘要

This paper presents a novel integrated method to correct geometric distortions of XRII (x-ray image intensifier) images. The method has been compared, in terms of mean-squared residual error measured at control and intermediate points, with two traditional local methods and a traditional global methods. The proposed method is based on the methods of moving least squares (MLS) and polynomial fitting. Extensive experiments were performed on simulated and real XRII images. In simulation, the effect of pincushion distortion, sigmoidal distortion, local distortion, noise, and the number of control points was tested. The traditional local methods were sensitive to pincushion and sigmoidal distortion. The traditional global method was only sensitive to sigmoidal distortion. The proposed method was found neither sensitive to pincushion distortion nor sensitive to sigmoidal distortion. The sensitivity of the proposed method to local distortion was lower than or comparable with that of the traditional global method. The sensitivity of the proposed method to noise was higher than that of all three traditional methods. Nevertheless, provided the standard deviation of noise was not greater than 0.1 pixels, accuracy of the proposed method is still higher than the traditional methods. The sensitivity of the proposed method to the number of control points was greatly lower than that of the traditional methods. Provided that a proper cutoff radius is chosen, accuracy of the proposed method is higher than that of the traditional methods. Experiments on real images, carried out by using a 9 in. XRII, showed that residual error of the proposed method (0.2544 +/- 0.2479 pixels) is lower than that of the traditional global method (0.4223 +/- 0.3879 pixels) and local methods (0.4555 +/- 0.3518 pixels and 0.3696 +/- 0.4019 pixels, respectively).
机译:本文提出了一种新颖的集成方法来校正XRII(x射线图像增强器)图像的几何变形。根据在控制点和中间点测得的均方差残差,将该方法与两种传统的局部方法和传统的全局方法进行了比较。所提出的方法基于移动最小二乘法(MLS)和多项式拟合的方法。在模拟和真实XRII图像上进行了广泛的实验。在仿真中,测试了枕形失真,S形失真,局部失真,噪声和控制点数量的影响。传统的局部方法对枕形和乙状结肠变形敏感。传统的全局方法仅对S形失真敏感。发现该方法既不对枕形失真敏感也不对S形失真敏感。所提出的方法对局部失真的敏感性低于或可与传统的全局方法相比。所提出的方法对噪声的敏感性高于所有三种传统方法。然而,如果噪声的标准偏差不大于0.1个像素,则该方法的精度仍高于传统方法。所提方法对控制点数量的敏感性大大低于传统方法。如果选择合适的截止半径,则该方法的精度将高于传统方法。通过使用9英寸XRII进行的真实图像实验表明,该方法的残差(0.2544 +/- 0.2479像素)低于传统的全局方法(0.4223 +/- 0.3879像素)和局部误差方法(分别为0.4555 +/- 0.3518像素和0.3696 +/- 0.4019像素)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号