运动补偿小波提升与去噪更新的医学CT动态数据压缩

Daniela Lanz, Jürgen Seiler, Karina Jaskolka, André Kaup
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引用次数: 4

摘要

对于由计算机断层扫描等医疗设备产生的动态$3-\ mathm {D}+\ mathm {t}$卷的无损压缩,可以采用各种编码方案。本文表明,三维子带编码优于无损HEVC编码,并且还提供了远程医疗应用中经常需要的可扩展表示。然而,得到的低通子带,作为整个原始序列的缩小代表,包含了大量的鬼影伪影。这可以通过在子带编码器中加入运动补偿方法来缓解。这导致高质量的低通子带,但也导致较低的压缩比。为了解决这个问题,我们提出了一种新的方法,通过在更新步骤中进行去噪来提高补偿三维小波提升的压缩效率。我们能够将低通子带的文件大小减少1.64%,同时低通子带仍然可以作为整个原始序列的缩小代表。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Compression of Dynamic Medical CT Data Using Motion Compensated Wavelet Lifting with Denoised Update
For the lossless compression of dynamic $3-\mathrm {D}+\mathrm {t}$ volumes as produced by medical devices like Computed Tomography, various coding schemes can be applied. This paper shows that 3-D subband coding outperforms lossless HEVC coding and additionally provides a scalable representation, which is often required in telemedicine applications. However, the resulting lowpass subband, which shall be used as a downscaled representative of the whole original sequence, contains a lot of ghosting artifacts. This can be alleviated by incorporating motion compensation methods into the subband coder. This results in a high quality lowpass subband but also leads to a lower compression ratio. In order to cope with this, we introduce a new approach for improving the compression efficiency of compensated 3-D wavelet lifting by performing denoising in the update step. We are able to reduce the file size of the lowpass subband by up to 1.64%, while the lowpass subband is still applicable for being used as a downscaled representative of the whole original sequence.
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