首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Quantitative assessment of image quality enhancement due to unsharp-mask processing in x-ray fluoroscopy
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Quantitative assessment of image quality enhancement due to unsharp-mask processing in x-ray fluoroscopy

机译:X射线透视中由于不清晰的掩模处理而导致的图像质量增强的定量评估

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摘要

Spatial unsharp-mask processing and its variants are commonly used in x-ray radiography to enhance image contrast. We investigated the effect of three unsharp-masking filter kernels of different sizes on the detection of an advanced guidewire tip in simulated x-ray fluoroscopy image sequences. To isolate the effect of visual temporal processing, we repeated the experiments on single images. Filter gains were selected so that all three kernels increased the contrast of a 0.018-in. (0.457-mm) guidewire by a factor of 2 but had different effects on image noise and signal profiles. There was no statistically significant effect of unsharp masking on human-observer performance in single images. However, all three kernels significantly improved average performance in image sequences, and the guidewire contrast required for detection was reduced by 32%-40%. A prewhitening channelized observer model predicted the disparity between sequences and single images and fitted measurements at different kernel sizes well. A nonprewhitening observer model did not. We conclude that unsharp masking is a simple and effective method of improving guidewire visualization in fluoroscopically guided interventional procedures and that quantitative image quality studies are essential for evaluation of image-processing techniques in sequences such as x-ray fluoroscopy.
机译:空间不锐化蒙版处理及其变体通常用于X射线射线照相术中以增强图像对比度。我们研究了三个不同大小的非锐化掩膜滤镜内核对模拟X射线荧光透视图像序列中先进导丝尖端的检测的影响。为了隔离视觉时间处理的影响,我们在单个图像上重复了实验。选择滤波器增益,以便所有三个内核都增加0.018英寸的对比度。 (0.457毫米)导丝的系数为2,但对图像噪声和信号轮廓的影响不同。在单个图像中,锐化蒙版对人类观察者的性能没有统计学上的显着影响。但是,所有三个内核均显着提高了图像序列的平均性能,并且检测所需的导丝对比度降低了32%-40%。预先加白的通道化观测器模型可以预测序列和单幅图像之间的差异,并且可以很好地拟合不同核尺寸下的测量结果。非美白观察者模型则没有。我们得出的结论是,不清晰的掩膜是一种在荧光检查引导的介入程序中改善导丝可视化的简单有效的方法,并且定量图像质量研究对于评估诸如X射线荧光检查等序列中的图像处理技术至关重要。

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