DocumentCode :
40640
Title :
A Novel Modulated Excitation Imaging System for Microultrasound
Author :
Weibao Qiu ; Yanyan Yu ; Fu Keung Tsang ; Hairong Zheng ; Lei Sun
Author_Institution :
Paul C. Lauterbur Res. Center for Biomed. Imaging, Inst. of Biomed. & Health Eng., Shenzhen, China
Volume :
60
Issue :
7
fYear :
2013
fDate :
Jul-13
Firstpage :
1884
Lastpage :
1890
Abstract :
Microultrasound (micro-US), also known as ultrasound biomicroscope, is able to delineate small structures with fine spatial resolution. However, micro-US suffers limited depth of penetration due to significantly large attenuation at high frequencies. Modulated excitation imaging has displayed the capability to improve the penetration depth, while maintaining the spatial resolution. But the effectiveness of this technique in micro-US has not been fully demonstrated. In addition, the current modulated excitation imaging systems for micro-US are designed for specific excitation method, therefore, lack of flexibility, and are typically bulky and expensive. This paper presents the development of a novel system to achieve modulated excitation imaging with high programmability and flexibility to satisfy various micro-US studies. It incorporates a high-voltage arbitrary waveform generator for producing desired excitation waveform, and a programmable imaging receiver implemented by the state-of-the-art electronics and field-programmable gate array. Test results show that the proposed modulated excitation imaging system can acquire up to 20 dB signal-to-noise ratio improvement and 83% increase of penetration depth in contrast to traditional short-pulse imaging method. In vivo experiment on the dorsal skin of a human hand demonstrates good performance of the programmable modulated excitation imaging system.
Keywords :
acoustic microscopy; biomedical electronics; biomedical ultrasonics; field programmable gate arrays; image resolution; skin; waveform generators; excitation waveform; field-programmable gate array; fine spatial resolution; high-voltage arbitrary waveform generator; human hand dorsal skin; microUS; microultrasound; noise figure 20 dB; penetration depth; programmable imaging receiver; programmable modulated excitation imaging system; signal-to-noise ratio improvement; small structure delineation; specific excitation method; state-of-the-art electronics; traditional short-pulse imaging method; ultrasound biomicroscope; Band pass filters; Chirp; Field programmable gate arrays; Imaging; Receivers; Signal generators; Ultrasonic imaging; Arbitrary waveform generator; field-programmable gate array (FPGA); microultrasound (micro-US); modulated excitation imaging; programmable and real-time imaging; Algorithms; Equipment Design; Equipment Failure Analysis; Image Enhancement; Image Interpretation, Computer-Assisted; Microscopy, Acoustic; Reproducibility of Results; Sensitivity and Specificity; Signal Processing, Computer-Assisted;
fLanguage :
English
Journal_Title :
Biomedical Engineering, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9294
Type :
jour
DOI :
10.1109/TBME.2013.2244887
Filename :
6428625
Link To Document :
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