Dual-/tri-apodization techniques for high frequency ultrasound imaging: a simulation studyopen access
- Authors
- Sung, Jin Ho; Jeong, Jong Seob
- Issue Date
- 11-Oct-2014
- Publisher
- BIOMED CENTRAL LTD
- Citation
- BIOMEDICAL ENGINEERING ONLINE, v.13, no.1
- Indexed
- SCIE
SCOPUS
- Journal Title
- BIOMEDICAL ENGINEERING ONLINE
- Volume
- 13
- Number
- 1
- URI
- https://scholarworks.dongguk.edu/handle/sw.dongguk/18845
- DOI
- 10.1186/1475-925X-13-143
- ISSN
- 1475-925X
- Abstract
- Background: In the ultrasound B-mode (Brightness-mode) imaging, high side-lobe level reduces contrast to noise ratio (CNR). A linear apodization scheme by using the window function can suppress the side-lobe level while the main-lobe width is increased resulting in degraded lateral resolution. In order to reduce the side-lobe level without sacrificing the main-lobe width, a non-linear apodization method has been suggested. Methods: In this paper, we computationally evaluated the performance of the non-linear apodization method such as dual-/tri-apodization focusing on the high frequency ultrasound image. The rectangular, Dolph-Chebyshev, and Kaiser window functions were employed to implement dual-/tri-apodization algorithms. The point and cyst target simulations were conducted by using a dedicated ultrasound simulation tool called Field-II. The center frequency of the simulated linear array transducer was 40 MHz and the total number of elements was 128. The performance of dual-/tri-apodization was compared with that of the rectangular window function focusing on the side-lobe level and the main-lobe widths (at -6 dB and -35 dB). Results: In the point target simulation, the main-lobe widths of the dual-/tri-apodization were very similar to that of the rectangular window, and the side-lobe levels of the dual-/tri-apodization were more suppressed by 9 similar to 10 dB. In the cyst target simulation, CNR values of the dual-/tri-apodization were improved by 41% and 51%, respectively. Conclusions: The performance of the non-linear apodization was numerically investigated. In comparison with the rectangular window function, the non-linear apodization method such as dual-and tri-apodization had low side-lobe level without sacrificing the main-lobe width. Thus, it can be a potential way to increase CNR maintaining the main-lobe width in the high frequency ultrasound imaging.
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Collections - College of Life Science and Biotechnology > Department of Biomedical Engineering > 1. Journal Articles

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