Title :
An adaptive speckle suppression filter based on Nakagami distribution
Author :
Ghofrani, S. ; Jahed-Motlagh, M.R. ; Ayatollahi, A.
Author_Institution :
Islamic Azad Univ., Tehran, Iran
Abstract :
Using a good statistical model of speckle formation is important in designing an adaptive filter for speckle reduction in ultrasound B-scan images. Most clinical ultrasound imaging systems use a nonlinear logarithmic function to reduce the dynamic range of the the input echo signal and emphasize objects with weak backscatter. Previously, the statistic of log-compressed images had been derived for Rayleigh and K distributions. In this paper, the statistics of log-compressed echo images is derived for a Nakagami distribution, more general than Rayleigh and with lower computational cost than K distribution, and used the extracted result for designing an unsharp masking filter to reduce speckle. To demonstrate the efficiency of the designed adaptive filter for removing speckle, we processed two original ultrasound images of kidney and liver.
Keywords :
adaptive filters; biomedical ultrasonics; interference suppression; medical image processing; speckle; statistical analysis; K distribution; Nakagami distribution; Rayleigh distribution; adaptive speckle suppression filter; clinical ultrasound imaging systems; computational cost; dynamic range reduction; input echo signal; log-compressed images; nonlinear logarithmic function; speckle formation; statistical model; ultrasound B-scan images; Adaptive filters; Computational efficiency; Dynamic range; Energy resolution; Image coding; Nakagami distribution; Rayleigh scattering; Speckle; Statistical distributions; Ultrasonic imaging;
Conference_Titel :
EUROCON'2001, Trends in Communications, International Conference on.
Conference_Location :
Bratislava, Slovakia
Print_ISBN :
0-7803-6490-2
DOI :
10.1109/EURCON.2001.937769