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New Compensation Principles for Enhanced Image Quality in Industrial Radiology with Digital Detector Arrays

机译:利用数字探测器阵列提高工业放射学中图像质量的新补偿原理

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Contrast-to-noise (CNR) management is the key element for image quality control in digital radiology. Modern DDA calibration techniques allow an extraordinary increase of CNR in comparison to all other digital detectors and film. Contrast reduction due to increase of X-ray energy can be overcompensated by noise reduction. This enables the reduction of acquisition time and increase of the thickness range per radiograph. Even limitations in the spatial resolution, constrained by the individual picture element (pixel) size of the detector, can be compensated with an increased CNR. Bad pixel management of DDAs in combination with CNR enhancement enables the safe application of this technology for film replacement. Considering these points, three compensation principles have been formulated for the implementation of DDAs as a viable film replacement technology:1st Compensation of reduced contrast (μ_(eff)) by increased signal-to-noise ratio (SNR): If optimization of contrast cannot be achieved, the noise must be reduced (i.e., increased SNR). If contrast can be increased, there is more tolerance for higher noise (moderate or lower SNR can be used).2nd Compensation of insufficient detector sharpness (high unsharpness) by increased SNR.3rd Compensation of interpolation unsharpness, due to bad pixel correction, by increased SNR.
机译:对比噪声(CNR)管理是数字放射学中图像质量控制的关键要素。与所有其他数字检测器和胶片相比,现代DDA校准技术可显着提高CNR。由于X射线能量增加而导致的对比度降低可能会因降噪而被过度补偿。这使得能够减少获取时间并增加每张射线照片的厚度范围。甚至可以通过增加的CNR来补偿受探测器单个像素(像素)大小限制的空间分辨率限制。 DDA的不良像素管理与CNR增强功能相结合,使该技术可以安全地用于胶片更换。考虑到这些要点,为实施DDA作为可行的胶片替代技术制定了三项补偿原则: 通过增加的信噪比(SNR)对对比度降低的第一补偿(μ_(eff)):如果无法实现对比度的优化,则必须降低噪声(即提高SNR)。如果可以提高对比度,则对更高的噪声有更大的容忍度(可以使用中等或更低的SNR)。 通过提高SNR来补偿探测器锐度不足(高清晰度)的第二次补偿。 由于不良的像素校正,通过提高SNR来对内插不清晰度进行第三次补偿。

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