DocumentCode
1489221
Title
Real-time Chirp-Coded Imaging With a Programmable Ultrasound Biomicroscope
Author
Bosisio, Mattéo R. ; Hasquenoph, Jean-Michel ; Sandrin, Laurent ; Laugier, Pascal ; Bridal, S. Lori ; Yon, Sylvain
Author_Institution
Lab. d´´Imagerie Parametrique, Univ. Pierre et Marie Curie Paris 6, Paris, France
Volume
57
Issue
3
fYear
2010
fDate
3/1/2010 12:00:00 AM
Firstpage
654
Lastpage
664
Abstract
Ultrasound biomicroscopy (UBM) of mice can provide a testing ground for new imaging strategies. The UBM system presented in this paper facilitates the development of imaging and measurement methods with programmable design, arbitrary waveform coding, broad bandwidth (2-80 MHz), digital filtering, programmable processing, RF data acquisition, multithread/multicore real-time display, and rapid mechanical scanning (??170 frames/s). To demonstrate the capacities of the UBM system, chirp (1.28, 2.56, and 5.12 ??s durations) sequences with matched filter analysis are implemented in real time. Chirp and conventional impulse imaging (31 and 46 MHz center frequencies) of a wire phantom at fast sectorial scanning (0.7?? ms-1, 20 frames/s one-way image rate) are compared. Axial and lateral resolutions at the focus with chirps approach impulse imaging resolutions. Chirps yield 10-15 dB gain in SNR and a 2-3 mm gain in imaging depth. Real-time impulse and chirp-coded imaging (at 10-5 frames/s) are demonstrated in the mouse, in vivo. The system´s open structure favors test and implementation of new sequences.
Keywords
acoustic microscopes; acoustic microscopy; biomedical ultrasonics; chirp modulation; matched filters; UBM; bandwidth 2 MHz to 80 MHz; gain 10 dB to 15 dB; impulse imaging; matched filter analysis; mice; programmable ultrasound biomicroscope; real-time chirp-coded imaging; ultrasound biomicroscopy; wire phantom; Bandwidth; Chirp; Design methodology; Image resolution; Mechanical variables measurement; Mice; Real time systems; Testing; Ultrasonic imaging; Ultrasonic variables measurement; Biomedical acoustic imaging; chirp modulation; finite-impulse response (FIR) digital filters; matched filters; signal analysis; Algorithms; Animals; Female; Kidney; Lumbosacral Region; Mice; Microscopy, Acoustic; Phantoms, Imaging; Signal Processing, Computer-Assisted; Software; Transducers;
fLanguage
English
Journal_Title
Biomedical Engineering, IEEE Transactions on
Publisher
ieee
ISSN
0018-9294
Type
jour
DOI
10.1109/TBME.2009.2033036
Filename
5272376
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