DocumentCode :
61951
Title :
Tissue Classification Using Ultrasound-Induced Variations in Acoustic Backscattering Features
Author :
Daoud, M.I. ; Mousavi, Parvin ; Imani, Farhad ; Rohling, Robert ; Abolmaesumi, P.
Author_Institution :
Dept. of Comput. Eng., German Jordanian Univ., Amman, Jordan
Volume :
60
Issue :
2
fYear :
2013
fDate :
Feb. 2013
Firstpage :
310
Lastpage :
320
Abstract :
Ultrasound (US) radio-frequency (RF) time series is an effective tissue classification method that enables accurate cancer diagnosis, but the mechanisms underlying this method are not completely understood. This paper presents a model to describe the variations in tissue temperature and sound speed that take place during the RF time series scanning procedures and relate these variations to US backscattering. The model was used to derive four novel characterization features. These features were used to classify three animal tissues, and they obtained accuracies as high as 88.01%. The performance of the proposed features was compared with RF time series features proposed in a previous study. The results indicated that the US-induced variations in tissue temperature and sound speed, which were used to derive the proposed features, were important contributors to the tissue typing capabilities of the RF time series. Simulations carried out to estimate the heating induced during the scanning procedure employed in this study showed temperature rises lower than 2 °C. The model and results presented in this paper can be used to improve the RF time series.
Keywords :
acoustic wave velocity; biological effects of acoustic radiation; biological tissues; biomechanics; biomedical ultrasonics; biothermics; cancer; radiofrequency measurement; time series; vibrations; RF time series scanning procedures; US backscattering variations; US induced tissue sound speed variations; US induced tissue temperature variations; acoustic backscattering features; animal tissue models; cancer diagnosis; tissue classification method; ultrasound induced variations; ultrasound radio frequency time series; Bovine; Equations; Imaging; Liver; Radio frequency; Thermal expansion; Time series analysis; Acoustic propagation; thermal effects; time series analysis; tissue characterization; ultrasound (US) imaging; Animals; Cattle; Chickens; Image Processing, Computer-Assisted; Liver; Models, Biological; Muscles; Phantoms, Imaging; Radio Waves; Signal Processing, Computer-Assisted; Support Vector Machines; Temperature; Ultrasonography;
fLanguage :
English
Journal_Title :
Biomedical Engineering, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9294
Type :
jour
DOI :
10.1109/TBME.2012.2224111
Filename :
6339012
Link To Document :
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