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首页> 外文期刊>IEEE Transactions on Medical Imaging >Automated optimization of JPEG 2000 encoder options based on model observer performance for detecting variable signals in X-ray coronary angiograms
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Automated optimization of JPEG 2000 encoder options based on model observer performance for detecting variable signals in X-ray coronary angiograms

机译:基于模型观察器性能的JPEG 2000编码器选项的自动优化,用于检测X射线冠状动脉造影中的可变信号

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摘要

Image compression is indispensable in medical applications where inherently large volumes of digitized images are presented. JPEG 2000 has recently been proposed as a new image compression standard. The present recommendations on the choice of JPEG 2000 encoder options were based on nontask-based metrics of image quality applied to nonmedical images. We used the performance of a model observer [nonprewhitening matched filter with an eye filter (NPWE)] in a visual detection task of varying signals [signal known exactly but variable (SKEV)] in X-ray coronary angiograms to optimize JPEG 2000 encoder options through a genetic algorithm procedure. We also obtained the performance of other model observers (Hotelling, Laguerre-Gauss Hotelling, channelized-Hotelling) and human observers to evaluate the validity of the NPWE optimized JPEG 2000 encoder settings. Compared to the default JPEG 2000 encoder settings, the NPWE-optimized encoder settings improved the detection performance of humans and the other three model observers for an SKEV task. In addition, the performance also was improved for a more clinically realistic task where the signal varied from image to image but was not known a priori to observers [signal known statistically (SKS)]. The highest performance improvement for humans was at a high compression ratio (e.g., 30:1) which resulted in approximately a 75% improvement for both the SKEV and SKS tasks.
机译:在医疗应用中,图像压缩是必不可少的,在医疗应用中,本质上存在大量数字化图像。 JPEG 2000最近被提出作为新的图像压缩标准。有关JPEG 2000编码器选项选择的当前建议基于适用于非医学图像的基于非任务的图像质量度量。我们在X射线冠状动脉血管造影照片中的变化信号[精确已知但可变的信号(SKEV)]的视觉检测任务中使用了模型观察器的性能[非预白相匹配的带眼滤光器(NPWE)的滤光器],以优化JPEG 2000编码器选项通过遗传算法程序。我们还获得了其他模型观测器(Hotelling,Laguerre-Gauss Hotelling,channelized-Hotelling)和人工观测器的性能,以评估NPWE优化的JPEG 2000编码器设置的有效性。与默认的JPEG 2000编码器设置相比,NPWE优化的编码器设置提高了人类和其他三个模型观察者对SKEV任务的检测性能。此外,该性能还针对更具临床现实意义的任务进行了改进,该任务的信号因图像而异,但对于观察者而言先验未知[统计上已知的信号(SKS)]。对于人类而言,最高的性能改善是在高压缩比(例如30:1)的情况下,这使得SKEV和SKS任务均提高了约75%。

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