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3D DCT Based Image Compression Method for the Medical Endoscopic Application

机译:基于3D医学内窥镜应用的图像压缩方法

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摘要

This paper proposes a novel 3D discrete cosine transform (DCT) based image compression method for medical endoscopic applications. Due to the high correlation among color components of wireless capsule endoscopy (WCE) images, the original 2D Bayer data pattern is reconstructed into a new 3D data pattern, and 3D DCT is adopted to compress the 3D data for high compression ratio and high quality. For the low computational complexity of 3D-DCT, an optimized 4-point DCT butterfly structure without multiplication operation is proposed. Due to the unique characteristics of the 3D data pattern, the quantization and zigzag scan are ameliorated. To further improve the visual quality of decompressed images, a frequency-domain filter is proposed to eliminate the blocking artifacts adaptively. Experiments show that our method attains an average compression ratio (CR) of 22.94:1 with the peak signal to noise ratio (PSNR) of 40.73 dB, which outperforms state-of-the-art methods.
机译:本文提出了一种用于医疗内窥镜应用的新型3D离散余弦变换(DCT)的图像压缩方法。由于无线胶囊内窥镜检查(WCE)图像的颜色分量之间的高相关性,原始的2D拜耳数据模式被重建为新的3D数据模式,并且采用3D DCT来压缩高压缩比和高质量的3D数据。对于3D-DCT的低计算复杂度,提出了一种没有乘法操作的优化的4点DCT蝶形结构。由于3D数据模式的独特特性,可以改善量化和Z字形扫描。为了进一步提高解压缩图像的视觉质量,提出了一种频域滤波器以自适应地消除阻塞伪像。实验表明,我们的方法达到了22.94:1的平均压缩比(Cr),峰值信号为40.73dB的噪声比(PSNR),其优于最先进的方法。

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