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Improving the spatial resolution of real-time radiography images using the maximum entropy method

机译:使用最大熵方法提高实时射线照相图像的空间分辨率

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The authors have evaluated the maximum-entropy method (MEM) as a technique to improve the spatial resolution of real-time radiography images. The point spread function (PSF) of the image intensifier was estimated by differentiating a high-resolution scan made by translating the edge of a lead plate in subpixel increments relative to a single pixel of the CCD (charge coupled device) video camera. The 1D PSF was rotated to form the 2D PSF, which was used as the system function for the MEM algorithm. Improvement in the restored image was evaluated quantitatively using a resolution gauge. MEM was found to increase the contrast of the resolution gauge over the visible range of the digitized image by as much as 8 dB. Furthermore, the MEM smoothed the image noise, restored the square-wave pattern, and did not generate significant artifacts.
机译:作者已经对最大熵方法(MEM)进行了评估,以提高实时X射线摄影图像的空间分辨率。图像增强器的点扩展函数(PSF)是通过区分高分辨率扫描而估算的,该高分辨率扫描是通过相对于CCD(电荷耦合器件)摄像机的单个像素以亚像素为单位平移铅板边缘进行的。旋转1D PSF以形成2D PSF,将其用作MEM算法的系统功能。使用分辨率计对恢复的图像的改善进行定量评估。发现MEM可在数字化图像的可见范围内将分辨率仪的对比度提高多达8 dB。此外,MEM可以平滑图像噪声,恢复方波图案,并且不会产生明显的伪影。

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