基于乘法多分辨率分解的无损体积医学图像压缩

Leila Belhadef, M. Outtas, Zoulikha Mekkakia Maaza, O. Déforges, A. Serir
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引用次数: 0

摘要

随着医学成像技术的出现,体积医学图像的压缩变得至关重要。为此,我们提出了一种新的乘性多分辨率分解(MMD)小波编码方案,用于体积医学图像的无损压缩。MMD用于散斑减少技术,但提供了一些可以在压缩中利用的特性。因此,作为小波变换,MMD提供了一种分层表示,并提供了实现无损压缩的可能性。在该方案中,我们将基于小波变换的片间滤波和运动补偿相结合,有效地降低了数据能量。我们比较了经典小波编码器如3D SPIHT和JP3D的无损结果。该方案将MMD/小波变换或MMD变换应用于图像的无损压缩技术中,在对图像进行片间滤波后,采用三维零树SPIHT算法对得到的子带进行编码。无损实验结果表明,与3D SPIHT和JP3D相比,该方案可以实现最低的比特率。
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Multiplicative Multiresolution Decomposition for Lossless Volumetric Medical Images Compression
With the emergence of medical imaging, the compression of volumetric medical images is essential. For this purpose, we propose a novel Multiplicative Multiresolution Decomposition (MMD) wavelet coding scheme for lossless compression of volumetric medical images. The MMD is used in speckle reduction technique but offers some proprieties which can be exploited in compression. Thus, as the wavelet transform the MMD provides a hierarchical representation and offers a possibility to realize lossless compression. We integrate in proposed scheme an inter slice filter based on wavelet transform and motion compensation to reduce data energy efficiently. We compare lossless results of classical wavelet coders such as 3D SPIHT and JP3D to the proposed scheme. This scheme incorporates MMD in lossless compression technique by applying MMD/wavelet or MMD transform to each slice, after inter slice filter is employed and the resulting sub-bands are coded by the 3D zero-tree algorithm SPIHT. Lossless experimental results show that the proposed scheme with the MMD can achieve lowest bit rates compared to 3D SPIHT and JP3D.
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来源期刊
Periodica polytechnica Electrical engineering and computer science
Periodica polytechnica Electrical engineering and computer science Engineering-Electrical and Electronic Engineering
CiteScore
2.60
自引率
0.00%
发文量
36
期刊介绍: The main scope of the journal is to publish original research articles in the wide field of electrical engineering and informatics fitting into one of the following five Sections of the Journal: (i) Communication systems, networks and technology, (ii) Computer science and information theory, (iii) Control, signal processing and signal analysis, medical applications, (iv) Components, Microelectronics and Material Sciences, (v) Power engineering and mechatronics, (vi) Mobile Software, Internet of Things and Wearable Devices, (vii) Solid-state lighting and (viii) Vehicular Technology (land, airborne, and maritime mobile services; automotive, radar systems; antennas and radio wave propagation).
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