DocumentCode :
1481478
Title :
Eigen-based clutter filter design for ultrasound color flow imaging: a review
Author :
Yu, Alfred C H ; Lovstakken, Lasse
Author_Institution :
Med. Eng. Program, Univ. of Hong Kong, Pokfulam, China
Volume :
57
Issue :
5
fYear :
2010
fDate :
5/1/2010 12:00:00 AM
Firstpage :
1096
Lastpage :
1111
Abstract :
Proper suppression of tissue clutter is a prerequisite for visualizing flow accurately in ultrasound color flow imaging. Among various clutter suppression methods, the eigen- based filter has shown potential because it can theoretically adapt its stopband to the actual clutter characteristics even when tissue motion is present. This paper presents a formative review on how eigen-based filters should be designed to improve their practical efficacy in adaptively suppressing clutter without affecting the blood flow echoes. Our review is centered around a comparative assessment of two eigen-filter design considerations: 1) eigen-component estimation approach (single-ensemble vs. multi-ensemble formulations), and 2) filter order selection mechanism (eigenvalue-based vs. frequencybased algorithms). To evaluate the practical efficacy of existing eigen-filter designs, we analyzed their clutter suppression level in two in vivo scenarios with substantial tissue motion (intra-operative coronary imaging and thyroid imaging). Our analysis shows that, as compared with polynomial regression filters (with or without instantaneous clutter downmixing), eigen-filters that use a frequency-based algorithm for filter order selection generally give Doppler power images with better contrast between blood and tissue regions. Results also suggest that both multi-ensemble and single-ensemble eigen-estimation approaches have their own advantages and weaknesses in different imaging scenarios. It may be beneficial to develop an algorithmic way of defining the eigen-filter formulation so that its performance advantages can be better realized.
Keywords :
Doppler effect; biological tissues; biomedical imaging; biomedical ultrasonics; clutter; haemodynamics; image colour analysis; image denoising; medical image processing; Doppler power images; blood flow echoes; eigen-based clutter filter design; eigenvalue-based algorithms; filter order selection; frequency-based algorithm; frequency-based algorithms; intraoperative coronary imaging; multiensemble eigen-estimation approaches; single-ensemble eigen-estimation approaches; thyroid imaging; tissue clutter suppression; tissue motion; ultrasound color flow imaging; Adaptive filters; Algorithm design and analysis; Blood flow; Frequency; Image analysis; Image motion analysis; In vivo; Motion analysis; Ultrasonic imaging; Visualization; Algorithms; Carotid Arteries; Echocardiography; Humans; Signal Processing, Computer-Assisted; Thyroid Gland; Ultrasonography, Doppler, Color;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/TUFFC.2010.1521
Filename :
5456258
Link To Document :
بازگشت