DocumentCode :
70337
Title :
Joint Source/Channel Coding for Prioritized Wireless Transmission of Multiple 3-D Regions of Interest in 3-D Medical Imaging Data
Author :
Sanchez, Victor
Author_Institution :
Dept. of Comput. Sci., Univ. of Warwick, Coventry, UK
Volume :
60
Issue :
2
fYear :
2013
fDate :
Feb. 2013
Firstpage :
397
Lastpage :
405
Abstract :
This paper presents a 3-D medical image coding method featuring two major improvements to previous work on 3-D region of interest (RoI) coding for telemedicine applications. Namely, 1) a data prioritization scheme that allows coding of multiple 3-D-RoIs; and 2) a joint/source channel coding scheme that allows prioritized transmission of multiple 3-D-RoIs over wireless channels. The method, which is based on the 3-D integer wavelet transform and embedded block coding with optimized truncation with 3-D context modeling, generates scalable and error-resilient bit streams with 3-D-RoI decoding capabilities. Coding of multiple 3-D-RoIs is attained by prioritizing the wavelet-transformed data according to a Gaussian mixed distribution, whereas error resiliency is attained by employing the error correction capabilities of rate-compatible punctured turbo codes. The robustness of the proposed method is evaluated for transmission of real 3-D medical images over Rayleigh-fading channels with a priori knowledge of the channel condition. Evaluation results show that the proposed coding method provides a superior performance compared to equal error protection and unequal error protection techniques.
Keywords :
Rayleigh channels; biomedical communication; biomedical imaging; block codes; combined source-channel coding; error correction codes; wavelet transforms; wireless channels; 3D RoI coding; 3D context modeling; 3D integer wavelet transform; 3D medical image coding method; 3D medical imaging data; Gaussian mixed distribution; Rayleigh fading channels; data prioritization scheme; embedded block coding; error correction capabilities; error resilient bit streams; joint source-channel coding; multiple 3D regions of interest; optimized truncation; prioritized wireless transmission; rate compatible punctured turbo codes; scalable bit streams; telemedicine applications; wavelet transformed data; Biomedical imaging; Channel coding; Image reconstruction; Scalability; Wavelet transforms; Wireless communication; 3-D medical image coding; Embedded block coding with optimized truncation (EBCOT); joint source/channel coding (JSCC); region of interest (RoI); Brain; Humans; Imaging, Three-Dimensional; Magnetic Resonance Imaging; Models, Theoretical; Signal Processing, Computer-Assisted; Telemedicine; Tomography, X-Ray Computed; Wireless Technology;
fLanguage :
English
Journal_Title :
Biomedical Engineering, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9294
Type :
jour
DOI :
10.1109/TBME.2012.2228000
Filename :
6355634
Link To Document :
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