Lossless Compression on MRI Images Using SWT

被引:0
作者
V. Anusuya
V. Srinivasa Raghavan
G. Kavitha
机构
[1] P.S.R. Engineering College,Department of Computer Science and Engineering
[2] Loyola Institute of Technology,undefined
[3] AAA College of Engineering and Technology,undefined
来源
Journal of Digital Imaging | 2014年 / 27卷
关键词
Stationary wavelet transform; EBCOT; Arithmetic coding; Bit plane coding;
D O I
暂无
中图分类号
学科分类号
摘要
Medical image compression is one of the growing research fields in biomedical applications. Most medical images need to be compressed using lossless compression as each pixel information is valuable. With the wide pervasiveness of medical imaging applications in health-care settings and the increased interest in telemedicine technologies, it has become essential to reduce both storage and transmission bandwidth requirements needed for archival and communication of related data, preferably by employing lossless compression methods. Furthermore, providing random access as well as resolution and quality scalability to the compressed data has become of great utility. Random access refers to the ability to decode any section of the compressed image without having to decode the entire data set. The system proposes to implement a lossless codec using an entropy coder. 3D medical images are decomposed into 2D slices and subjected to 2D-stationary wavelet transform (SWT). The decimated coefficients are compressed in parallel using embedded block coding with optimized truncation of the embedded bit stream. These bit streams are decoded and reconstructed using inverse SWT. Finally, the compression ratio (CR) is evaluated to prove the efficiency of the proposal. As an enhancement, the proposed system concentrates on minimizing the computation time by introducing parallel computing on the arithmetic coding stage as it deals with multiple subslices.
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页码:594 / 600
页数:6
相关论文
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