DocumentCode :
404742
Title :
A very low-complexity multi-resolution prediction-based wavelet transform method for medical image compression
Author :
Nagaraj, Nithin
Author_Institution :
Imaging Technol. Lab., GE Global Res., Bangalore, India
Volume :
2
fYear :
2003
fDate :
15-17 Oct. 2003
Firstpage :
525
Abstract :
Wavelet based lossless compression techniques have been popular for medical image compression due to a number of features, like multi-resolution representation, progressive transmission and high compression ratios. As decoding time is of paramount importance in medical applications, low complexity wavelets would be preferred for fast decoding and retrieval of data from picture archiving and communications systems (PACS) enabling quicker diagnosis and higher productivity of the physician. We propose a novel image compression system that claims extremely low complexity, in fact lower than the Haar wavelet, and at the same time providing higher compression ratios. The high pixel-to-pixel correlation inherent in medical images is first exploited by the application of differential pulse code modulation (DPCM) followed by a modified version of the Haar wavelet applied in an incomplete fashion. We report extensive results (first-order entropy estimates) on a large database of medical images.
Keywords :
Haar transforms; PACS; computational complexity; data compression; decoding; differential pulse code modulation; entropy; image coding; image retrieval; medical image processing; parameter estimation; transform coding; wavelet transforms; DPCM; Haar wavelet; PACS; compression ratios; decoding time; differential pulse code modulation; first-order entropy estimation; lossless compression; low complexity; medical image compression; medical image database; multi-resolution representation; prediction method; progressive transmission; wavelet transform; Biomedical equipment; Biomedical imaging; Decoding; Image coding; Medical diagnostic imaging; Medical services; Picture archiving and communication systems; Propagation losses; Pulse modulation; Wavelet transforms;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
TENCON 2003. Conference on Convergent Technologies for the Asia-Pacific Region
Print_ISBN :
0-7803-8162-9
Type :
conf
DOI :
10.1109/TENCON.2003.1273215
Filename :
1273215
Link To Document :
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