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DCT 系数的统计分布及其在三维医学图像帧间压缩算法中的应用。

Statistical distributions of DCT coefficients and their application to an interframe compression algorithm for 3-D medical images.

机构信息

Washington Univ., Seattle, WA.

出版信息

IEEE Trans Med Imaging. 1993;12(3):478-85. doi: 10.1109/42.241875.

Abstract

Displacement estimated interframe (DEI) coding, a coding scheme for 3-D medical image data sets such as X-ray computed tomography (CT) or magnetic resonance (MR) images, is presented. To take advantage of the correlation between contiguous slices, a displacement-compensated difference image based on the previous image is encoded. The best fitting distribution functions for the discrete cosine transform (DCT) coefficients obtained from displacement compensated difference images are determined and used in allocating bits and optimizing quantizers for the coefficients. The DEI scheme is compared with 2-D block discrete cosine transform (DCT) as well as a full-frame DCT using the bit allocation technique of S. Lo and H.K. Huang (1985). For X-ray CT head images, the present bit allocation and quantizer design, using an appropriate distribution model, resulted in a 13-dB improvement in the SNR compared to the full-frame DCT using the bit allocation technique. For an image set with 5-mm slice thickness, the DEI method gave about 5% improvement in the compression ratio on average and less blockiness at the same distortion. The performance gain increases to about 10% when the slice thickness decreases to 3 mm.

摘要

提出了一种用于 X 射线计算机断层扫描(CT)或磁共振(MR)图像等三维医学图像数据集的帧间位移估计(DEI)编码方案。为了利用连续切片之间的相关性,基于前一图像对位移补偿差分图像进行编码。确定从位移补偿差分图像获得的离散余弦变换(DCT)系数的最佳拟合分布函数,并将其用于分配位和优化系数的量化器。将 DEI 方案与二维块离散余弦变换(DCT)以及使用 S. Lo 和 H.K. Huang(1985)的位分配技术的全帧 DCT 进行了比较。对于 X 射线 CT 头部图像,使用适当的分布模型进行当前的位分配和量化器设计,与使用位分配技术的全帧 DCT 相比,SNR 提高了 13dB。对于厚度为 5mm 的切片图像集,DEI 方法的平均压缩比提高了约 5%,在相同的失真下,块状效应更小。当切片厚度减小到 3mm 时,性能增益增加到约 10%。

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