DocumentCode :
21676
Title :
Electromagnetic acoustic imaging
Author :
Emerson, J.F. ; Chang, D.B. ; McNaughton, S. ; Jong Seob Jeong ; Shung, K. Kirk ; Cerwin, S.A.
Author_Institution :
Dept. of Pathology & Lab. Med., Univ. of Southern California, Los Angeles, CA, USA
Volume :
60
Issue :
2
fYear :
2013
fDate :
Feb-13
Firstpage :
364
Lastpage :
372
Abstract :
Electromagnetic acoustic imaging (EMAI) is a new imaging technique that uses long-wavelength RF electromagnetic (EM) waves to induce ultrasound emission. Signal intensity and image contrast have been found to depend on spatially varying electrical conductivity of the medium in addition to conventional acoustic properties. The resultant conductivity- weighted ultrasound data may enhance the diagnostic performance of medical ultrasound in cancer and cardiovascular applications because of the known changes in conductivity of malignancy and blood-filled spaces. EMAI has a potential advantage over other related imaging techniques because it combines the high resolution associated with ultrasound detection with the generation of the ultrasound signals directly related to physiologically important electrical properties of the tissues. Here, we report the theoretical development of EMAI, implementation of a dual-mode EMAI/ultrasound apparatus, and successful demonstrations of EMAI in various phantoms designed to establish feasibility of the approach for eventual medical applications.
Keywords :
bioelectric potentials; biomedical transducers; biomedical ultrasonics; blood; cancer; cardiovascular system; image resolution; medical image processing; phantoms; tumours; ultrasonic imaging; ultrasonic transducers; blood-filled spaces; cancer; cardiovascular applications; conductivity-weighted ultrasound data; conventional acoustic properties; diagnostic performance; dual-mode EMAI-ultrasound apparatus; electromagnetic acoustic imaging; high image resolution; image contrast; long-wavelength radiofrequency electromagnetic waves; malignancy; medical applications; medical ultrasound; phantoms; signal intensity; spatially varying electrical conductivity; tissues; ultrasound detection; ultrasound emission; ultrasound signal generation; Coils; Conductivity; Magnetic liquids; Phantoms; Radio frequency; Transducers; Ultrasonic imaging; Acoustics; Diagnostic Imaging; Electric Conductivity; Electromagnetic Fields; Phantoms, Imaging;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/TUFFC.2013.2572
Filename :
6416491
Link To Document :
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