DocumentCode :
557435
Title :
Elastogram estimation using adaptive-length Savitzky-Golay digital differentiators
Author :
Tao, Shengzhen ; Shao, Jinhua ; Zhu, Xinjian ; Bai, Jing
Author_Institution :
Dept. of Biomed. Eng., Tsinghua Univ., Beijing, China
Volume :
2
fYear :
2011
fDate :
15-17 Oct. 2011
Firstpage :
1089
Lastpage :
1092
Abstract :
Studies have shown that the Savitzky-Golay digital differentiator (SGDD) is a promising technique in elastography due to its ability in reducing elastogram noises and enhancing the contrast-to-noise ratio between lesion and background tissue. The performance of SGDD is mainly determined by its length/order. Usually, the proper differentiator length is determined as the one providing the maximum contrast between lesions and background tissues. Generally, long SGDDs reduce noise in uniform-strain regions more effectively, and can therefore improve lesion-detection ability. However, they may also lead to bias in regions of abrupt strain changes and finally limit the enhancement to contrast. Therefore, it will be advantageous to determine differentiator length according to local properties of elastograms. In this study, we propose a method to adaptively select proper SGDD length according to local properties of displacement estimates. Simulation experiments show that this method tends to select long SGDDs in regions of uniform strains, and prefers short SGDDs in regions presenting abrupt strain changes. Finally, the limitation to contrast induced by over-smoothing of single length SGDD can be overcome, and further enhancement to contrast is provided.
Keywords :
biomedical ultrasonics; displacement measurement; image denoising; image enhancement; medical image processing; parameter estimation; tumours; ultrasonic imaging; adaptive parameter selection; adaptive-length Savitzky-Golay digital differentiators; background tissue; contrast enhancement; contrast-to-noise ratio; differentiator length; displacement estimates; elastogram estimation; imaging modality; lesion-detection ability; noise reduction; ultrasonic elastography; uniform-strain regions; Fitting; Imaging; Lesions; Noise; Smoothing methods; Strain; Ultrasonic imaging; Savitzky-Golay digital differentiator; adaptive order; elastogram; strain calculation; ultrasound elastography;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Biomedical Engineering and Informatics (BMEI), 2011 4th International Conference on
Conference_Location :
Shanghai
Print_ISBN :
978-1-4244-9351-7
Type :
conf
DOI :
10.1109/BMEI.2011.6098389
Filename :
6098389
Link To Document :
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