DocumentCode :
107684
Title :
A flexible annular-array imaging platform for micro-ultrasound
Author :
Weibao Qiu ; Yanyan Yu ; Chabok, H.R. ; Cheng Liu ; Fu Keung Tsang ; Qifa Zhou ; Shung, K.K. ; Hairong Zheng ; Lei Sun
Author_Institution :
Paul C. Lauterbur Res. Center for Biomed. Imaging, Shenzhen Inst. of Adv. Technol., Shenzhen, China
Volume :
60
Issue :
1
fYear :
2013
fDate :
Jan-13
Abstract :
Micro-ultrasound is an invaluable imaging tool for many clinical and preclinical applications requiring high resolution (approximately several tens of micrometers). Imaging systems for micro-ultrasound, including single-element imaging systems and linear-array imaging systems, have been developed extensively in recent years. Single-element systems are cheaper, but linear-array systems give much better image quality at a higher expense. Annular-array-based systems provide a third alternative, striking a balance between image quality and expense. This paper presents the development of a novel programmable and real-time annular-array imaging platform for micro-ultrasound. It supports multi-channel dynamic beamforming techniques for large-depth-of-field imaging. The major image processing algorithms were achieved by a novel field-programmable gate array technology for high speed and flexibility. Real-time imaging was achieved by fast processing algorithms and high-speed data transfer interface. The platform utilizes a printed circuit board scheme incorporating state-of-the-art electronics for compactness and cost effectiveness. Extensive tests including hardware, algorithms, wire phantom, and tissue mimicking phantom measurements were conducted to demonstrate good performance of the platform. The calculated contrast-to-noise ratio (CNR) of the tissue phantom measurements were higher than 1.2 in the range of 3.8 to 8.7 mm imaging depth. The platform supported more than 25 images per second for real-time image acquisition. The depth-of-field had about 2.5-fold improvement compared to single-element transducer imaging.
Keywords :
biological tissues; biomedical electronics; biomedical ultrasonics; field programmable gate arrays; medical image processing; phantoms; printed circuits; ultrasonic arrays; CNR; annular-array-based systems; contrast-to-noise ratio; field-programmable gate array technology; flexible annular-array imaging platform; high-speed data transfer interface; image processing algorithm; large-depth-of-field imaging; linear-array imaging systems; microultrasound; multichannel dynamic beamforming techniques; preclinical applications; printed circuit board scheme; programmable imaging platform; real-time annular-array imaging platform; real-time image acquisition; single-element imaging systems; tissue mimicking phantom measurements; wire phantom; Delay; Field programmable gate arrays; Imaging; Pulse generation; Real-time systems; Receivers; Transducers; Algorithms; Equipment Design; Image Processing, Computer-Assisted; Microtechnology; Models, Biological; Phantoms, Imaging; Transducers; Ultrasonography;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/TUFFC.2013.2548
Filename :
6396497
Link To Document :
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