Title :
Wavelet filters analysis for speckle reduction in intravascular ultrasound images
Author :
Lazrag, H. ; Naceur, Mohamed Saber
Author_Institution :
LTSIRS, Ecole Nat. d´Ing. de Tunis, Tunis, Tunisia
Abstract :
Speckle noise is an inherent property of intravascular ultrasound imaging (IVUS) and it generally tends to deteriorate the image quality, thereby reducing the diagnostic value of this medical imaging modality. As a result, the speckle reduction filtering is considered to be an important and essential procedure to be used, whenever IVUS images are used for atherosclerotic lesions assessment. Wavelet-based methods have been found particularly for image enhancement and de-noising given that a suitable separation of signal and noise can be achieved in the transform domain based on their distinct localization and distribution in time and frequency domains. This paper presents a comparative study of various wavelet filter methods applied to intravascular ultrasound images. The comparative evaluation of the de-speckling performance is defined using image quality parameters such as the peak signal-to-noise ratio and the normalized mean square error. Furthermore, this performance has been compared with the Wiener filtering method. The results included a series of simulated and in vivo IVUS images.
Keywords :
Wiener filters; biomedical ultrasonics; image denoising; image enhancement; mean square error methods; medical image processing; speckle; wavelet transforms; Wiener filtering; atherosclerotic lesions assessment; de-speckling performance; diagnostic value; frequency domains; image de-noising; image enhancement; image quality deterioration; image quality parameters; in vivo IVUS images; intravascular ultrasound images; medical imaging modality; normalized mean square error; signal-to-noise ratio; speckle noise; speckle reduction filtering; time domains; transform domain; wavelet filters analysis; Biomedical imaging; PSNR; Speckle; Ultrasonic imaging; Wavelet coefficients; Wiener filters; Intravascular Ultrasound Images; Speckle Noise; Thresholding; Wavelet Filters; Wiener;
Conference_Titel :
Sciences of Electronics, Technologies of Information and Telecommunications (SETIT), 2012 6th International Conference on
Conference_Location :
Sousse
Print_ISBN :
978-1-4673-1657-6
DOI :
10.1109/SETIT.2012.6481944