Evaluation of JPEG and wavelet compression of body CT images for direct digital teleradiologic transmission

被引:54
作者
Kalyanpur, A [1 ]
Neklesa, VP [1 ]
Taylor, CR [1 ]
Daftary, AR [1 ]
Brink, JA [1 ]
机构
[1] Yale Univ, Sch Med, Dept Diagnost Radiol, New Haven, CT 06520 USA
关键词
computed tomography (CT); image processing; image quality; data compression; images; storage and retrieval; transmission; phantoms; teleradiology;
D O I
10.1148/radiology.217.3.r00nv22772
中图分类号
R8 [特种医学]; R445 [影像诊断学];
学科分类号
1002 ; 100207 ; 1009 ;
摘要
PURPOSE: To determine acceptable levels of JPEG (Joint Photographic Experts Group) and wavelet compression for teleradiologic transmission of body computed tomographic (CT) images. MATERIALS AMD METHODS: A digital test pattern (Society of Motion Picture and Television Engineers, 512 x 512 matrix) was transmitted after JPEG or wavelet compression by using point-to-point and Web-based teleradiology, respectively. Lossless, 10:1 tossy, and 20:1 lossy ratios were tested. Images were evaluated for high- and low-contrast resolution, sensitivity to small signal differences, and misregistration artifacts. Three independent observers who were blinded to the compression scheme evaluated these image quality measures in 20 clinical cases with similar levels of compression. RESULTS: High-contrast resolution was not diminished with any tested level of JPEG or wavelet compression. With JPEG compression, low-contrast resolution was not lost with 10:1 tossy compression but was lost at 3% modulation with 20:1 lossy compression. With wavelet compression, there was loss of 1 % modulation with 10:1 lossy compression and loss of 5% modulation with 20:1 lossy compression. Sensitivity to small signal differences (5% and 95% of the maximal signal) diminished only with 20:1 lossy wavelet compression. With 10:1 lossy compression, misregistration artifacts were mild and were equivalent with JPEG and wavelet compression. Qualitative clinical findings supported these findings. CONCLUSION: Lossy 10:1 compression is suitable for on-call electronic transmission of body CT images as long as original images are subsequently reviewed.
引用
收藏
页码:772 / 779
页数:8
相关论文
共 26 条
[1]   THE EFFECT OF IRREVERSIBLE IMAGE COMPRESSION ON DIAGNOSTIC-ACCURACY IN THORACIC IMAGING [J].
ABERLE, DR ;
GLEESON, F ;
SAYRE, JW ;
BROWN, K ;
BATRA, P ;
YOUNG, DA ;
STEWART, BK ;
HO, BKT ;
HUANG, HK .
INVESTIGATIVE RADIOLOGY, 1993, 28 (05) :398-403
[2]  
*AM COLL RAD, 1998, ACR STAND TEL, P3
[3]   Image coding using wavelet transform [J].
Antonini, Marc ;
Barlaud, Michel ;
Mathieu, Pierre ;
Daubechies, Ingrid .
IEEE TRANSACTIONS ON IMAGE PROCESSING, 1992, 1 (02) :205-220
[4]   Multiphasic renal CT: Comparison of renal mass enhancement during the corticomedullary and nephrographic phases [J].
Birnbaum, BA ;
Jacobs, JE ;
Ramchandani, P .
RADIOLOGY, 1996, 200 (03) :753-758
[5]   FULL-FRAME TRANSFORM COMPRESSION OF CT AND MR IMAGES [J].
CHAN, KK ;
LOU, SL ;
HUANG, HK .
RADIOLOGY, 1989, 171 (03) :847-851
[6]  
CLUNIE DA, 1995, AM J NEURORADIOL, V16, P1435
[7]   THORACIC CT IMAGES - EFFECT OF LOSSY IMAGE COMPRESSION ON DIAGNOSTIC-ACCURACY [J].
COSMAN, PC ;
DAVIDSON, HC ;
BERGIN, CJ ;
TSENG, CW ;
MOSES, LE ;
RISKIN, EA ;
OLSHEN, RA ;
GRAY, RM .
RADIOLOGY, 1994, 190 (02) :517-524
[8]   Evaluation of irreversible compression of digitized posterior-anterior chest radiographs [J].
Erickson, BJ ;
Manduca, A ;
Persons, KR ;
Earnest, F ;
Hartman, TE ;
Harms, GF ;
Brown, LR .
JOURNAL OF DIGITAL IMAGING, 1997, 10 (03) :97-102
[9]   Wavelet compression of medical images [J].
Erickson, BJ ;
Manduca, A ;
Palisson, P ;
Persons, KR ;
Earnest, F ;
Savcenko, V ;
Hangiandreou, NJ .
RADIOLOGY, 1998, 206 (03) :599-607
[10]   APPLICATION OF WAVELET COMPRESSION TO DIGITIZED RADIOGRAPHS [J].
GOLDBERG, MA ;
PIVOVAROV, M ;
MAYOSMITH, WW ;
BHALLA, MP ;
BLICKMAN, JG ;
BRAMSON, RT ;
BOLAND, GWL ;
LLEWELLYN, HJ ;
HALPERN, E .
AMERICAN JOURNAL OF ROENTGENOLOGY, 1994, 163 (02) :463-468