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首页> 外文期刊>Australasian physical & engineering sciences in medicine >A rapid compression technique for 4-D functional MRI images using data rearrangement and modified binary array techniques
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A rapid compression technique for 4-D functional MRI images using data rearrangement and modified binary array techniques

机译:使用数据重排和改进的二进制数组技术对4-D功能MRI图像进行快速压缩的技术

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Compression techniques are vital for efficient storage and fast transfer of medical image data. The existing compression techniques take significant amount of time for performing encoding and decoding and hence the purpose of compression is not fully satisfied. In this paper a rapid 4-D lossy compression method constructed using data rearrangement, wavelet-based contourlet transformation and a modified binary array technique has been proposed for functional magnetic resonance imaging (fMRI) images. In the proposed method, the image slices of fMRI data are rearranged so that the redundant slices form a sequence. The image sequence is then divided into slices and transformed using wavelet-based contourlet transform (WBCT). In WBCT, the high frequency sub-band obtained from wavelet transform is further decomposed into multiple directional sub-bands by directional filter bank to obtain more directional information. The relationship between the coefficients has been changed in WBCT as it has more directions. The differences in parent-child relationships are handled by a repositioning algorithm. The repositioned coefficients are then subjected to quantization. The quantized coefficients are further compressed by modified binary array technique where the most frequently occurring value of a sequence is coded only once. The proposed method has been experimented with fMRI images the results indicated that the processing time of the proposed method is less compared to existing wavelet-based set partitioning in hierarchical trees and set partitioning embedded block coder (SPECK) compression schemes [1]. The proposed method could also yield a better compression performance compared to wavelet-based SPECK coder. The objective results showed that the proposed method could gain good compression ratio in maintaining a peak signal noise ratio value of above 70 for all the experimented sequences. The SSIM value is equal to 1 and the value of CC is greater than 0.9 for all experiments. Subjective evaluation on the reconstructed images indicated that the proposed method could reproduce the diagnostic features of fMRI images clearly.
机译:压缩技术对于有效存储和快速传输医学图像数据至关重要。现有的压缩技术花费大量时间来执行编码和解码,因此不能完全满足压缩的目的。在本文中,提出了一种使用数据重排,基于小波的轮廓波变换和改进的二进制阵列技术构建的快速4D有损压缩方法,用于功能磁共振成像(fMRI)图像。在提出的方法中,fMRI数据的图像切片被重新排列,以使冗余切片形成一个序列。然后将图像序列划分为多个切片,并使用基于小波的轮廓波变换(WBCT)进行变换。在WBCT中,由小波变换获得的高频子带被定向滤波器组进一步分解为多个定向子带,以获得更多的定向信息。由于WBCT具有更多方向,因此系数之间的关系已更改。父子关系中的差异由重新定位算法处理。然后对重新定位的系数进行量化。量化系数通过改进的二进制数组技术进一步压缩,其中序列中最频繁出现的值仅被编码一次。用fMRI图像对提出的方法进行了实验,结果表明,与现有的基于分层树的基于小波的集合分割和集合分割嵌入式块编码器(SPECK)压缩方案相比,该方法的处理时间更少。与基于小波的SPECK编码器相比,所提出的方法还可以产生更好的压缩性能。客观结果表明,对于所有实验序列,该方法在保持峰值信噪比值均在70以上的情况下,可以获得良好的压缩率。对于所有实验,SSIM值均等于1,CC值大于0.9。对重建图像的主观评价表明,所提出的方法可以清楚地再现fMRI图像的诊断特征。

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