DocumentCode :
67743
Title :
Motion artifact reduction in ultrasound based thermal strain imaging of atherosclerotic plaques using time-series analysis
Author :
Dutta, D. ; Mahmoud, Ahmed ; Leers, Steven ; Kang Kim
Author_Institution :
Heart & Vascular Inst., Univ. of Pittsburgh Med. Center (UPMC), Pittsburgh, PA, USA
Volume :
60
Issue :
8
fYear :
2013
fDate :
Aug-13
Firstpage :
1660
Lastpage :
1668
Abstract :
Large lipid pools in vulnerable plaques, in principle, can be detected using ultrasound-based thermal strain imaging (US-TSI). One practical challenge for in vivo cardiovascular application of US-TSI is that the thermal strain is masked by the mechanical strain caused by cardiac pulsation. Electrocardiography (ECG) gating is a widely adopted method for cardiac motion compensation, but it is often susceptible to electrical and physiological noise. In this paper, we present an alternative time-series analysis approach to separate thermal strain from the mechanical strain without using ECG. The performance and feasibility of the time-series analysis technique was tested via numerical simulation as well as in vitro water tank experiments, using a vessel-mimicking phantom and an excised human atherosclerotic artery, for which the cardiac pulsation is simulated by a pulsatile pump.
Keywords :
biomechanics; biomedical ultrasonics; biomimetics; blood vessels; cardiovascular system; medical disorders; numerical analysis; phantoms; pulsatile flow; pumps; time series; ECG gating; atherosclerotic plaque; cardiac motion compensation; cardiac pulsation simulation; electrical noise; electrocardiography gating; excised human atherosclerotic artery; in vitro water tank experiment; in vivo cardiovascular application; lipid pool; mechanical strain; motion artifact reduction; numerical simulation; physiological noise; pulsatile pump; time-series analysis technique; ultrasound based thermal strain imaging; vessel-mimicking phantom; Electrocardiography; Heating; Lipidomics; Phantoms; Strain; Ultrasonic imaging;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/TUFFC.2013.2748
Filename :
6573444
Link To Document :
بازگشت