High-Quality Image Compression for Gastrointestinal Endoscope

Lan-Rong Dung, Tsung-Hsi Chiang
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Abstract

This paper proposes an efficient framework of high-quality image compression method for upper Gastrointestinal tract endoscopy images. The proposed DEWC coding method saves traditional image preprocessing computations, such as demosaicking and color-space transformation, and directly utilizes raw image data acquired from CMOS sensor. R, G and B band image are then separately encoded by wavelet-based SPECK coding. In a cardinal GI tract environment, the spatial frequency distribution of red component is lower than green or blue, and green component is relatively high while compared to blue and red components. DEWC coding saves more bits on red band while allocating more bits on green and blue bands. Therefore, under a fixed compression ratio, such non-uniform bit-rate allocation may earn a better image quality. To measure quality-loss in non-uniform bit-rate allocation, a quality quantified measurement called color-distortion based on CIE94 color-difference formula is also proposed. By using analytical result of color-distortion in bit-rate and bit-rate-difference analysis, an optimal/suboptimal bit-rate allocation scheme can be found by solving linear equations derived from the relationship of color-distortion and bit-rate-difference. When comparing to general JPEG2000 compression standard, the experimental result shows that proposed DEWC coding has a better image quality in color-distortion measurement and more efficient performance in execution time.
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胃肠内窥镜的高质量图像压缩
提出了一种高效的上消化道内窥镜图像高质量压缩方法框架。本文提出的DEWC编码方法省去了传统的图像预处理计算,如去马赛克和色彩空间变换,直接利用从CMOS传感器获取的原始图像数据。然后用基于小波的SPECK编码分别对R、G、B波段图像进行编码。在基数胃肠道环境中,红色分量的空间频率分布低于绿色或蓝色,而绿色分量相对于蓝色和红色分量相对较高。DEWC编码在红色频带上节省更多的比特,在绿色和蓝色频带上分配更多的比特。因此,在固定的压缩比下,这种不均匀的比特率分配可以获得更好的图像质量。为了测量非均匀比特率分配中的质量损失,提出了一种基于CIE94色差公式的质量量化测量方法——颜色失真。利用码率和码率差分析中颜色失真的分析结果,通过求解由颜色失真和码率差关系导出的线性方程,找到最优/次优码率分配方案。实验结果表明,与通用的JPEG2000压缩标准相比,本文提出的DEWC编码在色彩失真测量方面具有更好的图像质量,在执行时间上具有更高的性能。
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