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Four-Dimensional Compression of fMRI Using JPEG2000

机译:使用JPEG2000的fMRI的四维压缩

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摘要

Many medical imaging techniques available today generate 4D data sets. One such technique is functional magnetic resonance imaging (fMRI) which aims to determine regions of the brain that are activated due to various cognitive and/or motor functions or sensory stimuli. These data sets often require substantial resources for storage and transmission and hence call for efficient compression algorithms. fMRI data can be seen as a time-series of 3D images of the brain. Many different strategies can be employed for compressing such data. One possibility is to treat each 2D slice independently. Alternatively, it is also possible to compress each 3D image independently. Such methods do not fully exploit the redundancy present in 4D data. In this work, methods using 4D wavelet transforms are proposed. They are compared to different 2D and 3D methods. The proposed schemes are based on JPEG2000, which is included in the DICOM standard as a transfer syntax. Methodologies to test the effects of lossy compression on the end result of fMRI analysis are introduced and used to compare different compression algorithms.
机译:当今可用的许多医学成像技术可生成4D数据集。一种这样的技术是功能磁共振成像(fMRI),其旨在确定由于各种认知和/或运动功能或感觉刺激而被激活的大脑区域。这些数据集通常需要大量资源用于存储和传输,因此需要有效的压缩算法。 fMRI数据可以看作是大脑3D图像的时间序列。可以采用许多不同的策略来压缩这样的数据。一种可能性是独立对待每个2D切片。或者,也可以独立地压缩每个3D图像。这样的方法不能完全利用4D数据中存在的冗余。在这项工作中,提出了使用4D小波变换的方法。将它们与不同的2D和3D方法进行了比较。提出的方案基于JPEG2000,该格式作为传输语法包含在DICOM标准中。介绍了测试有损压缩对fMRI分析最终结果的影响的方法,并将其用于比较不同的压缩算法。

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