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A progressive transmission capable diagnostically lossless compression scheme for 3D medical image sets

机译:具有渐进传输能力的3D医学图像集的诊断无损压缩方案

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This paper presents a novel and efficient diagnostically lossless compression for 3D medical image sets. This compression scheme provides the 3D medical image sets with a progressive transmission capability. An automated filter-and-threshold based preprocessing technique is used to remove noise outside the diagnostic region. Then a wavelet decomposition feature vector based approach is applied to determine the reference image for the entire 3D medical image set. The selected reference image contains the most discernible anatomical structures within a relative large diagnostic region. It is progressively encoded by a lossless embedded zerotree wavelet method so the validity of an entire set can be determined early. This preprocessing technique is followed by an optimal predictor plus a 1st-level integer wavelet transform to de-correlate the 3D medical image set. Run-length and arithmetic coding are used to further remove coding redundancy. This diagnostically lossless compression method achieves an average compression of 2.1038, 2.4292, and 1.6826 bits per pixel for three types of 3D magneticresonance image sets. The integrated progressive transmission capability degrades the compression performance by an average of 7.25%, 6.60%, and 4.49% for the above three types. Moreover, our compression without and with progressive transmission achieves better compression than the state-of-the-art. (c) 2005 Elsevier Inc. All rights reserved.
机译:本文提出了一种新颖,有效的3D医学图像集诊断无损压缩方法。该压缩方案为3D医学图像集提供了渐进的传输能力。一种基于滤波阈值的自动预处理技术用于去除诊断区域之外的噪声。然后应用基于小波分解特征向量的方法来确定整个3D医学图像集的参考图像。所选参考图像在相对较大的诊断区域内包含最明显的解剖结构。它通过无损嵌入零树小波方法逐步编码,因此可以及早确定整个集合的有效性。该预处理技术之后是最佳预测器以及第1级整数小波变换,以使3D医学图像集解相关。游程长度和算术编码用于进一步消除编码冗余。对于三种类型的3D磁共振图像集,此诊断无损压缩方法可实现每像素2.1038、2.4292和1.6826位的平均压缩。集成的渐进式传输功能会使以上三种类型的压缩性能平均降低7.25%,6.60%和4.49%。此外,与现有技术相比,不带渐进式传输和带渐进式传输的压缩均能实现更好的压缩。 (c)2005 Elsevier Inc.保留所有权利。

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