DocumentCode :
3603334
Title :
Improving Cardiac Phase Extraction in IVUS Studies by Integration of Gating Methods
Author :
Maso Talou, Gonzalo D. ; Larrabide, Ignacio ; Blanco, Pablo J. ; Guedes Bezerra, Cristiano ; Lemos, Pedro A. ; Feijoo, Raul A.
Author_Institution :
Nat. Lab. for Sci. Comput. (LNCC), Nat. Inst. of Sci. & Technol. in Med. Assisted by Sci. Comput., Petropolis, Brazil
Volume :
62
Issue :
12
fYear :
2015
Firstpage :
2867
Lastpage :
2877
Abstract :
Goal: Coronary intravascular ultrasound (IVUS) is a fundamental imaging technique for atherosclerotic plaque assessment. However, volume-based data retrieved from IVUS studies can be misleading due to the artifacts generated by the cardiac motion, hindering diagnostic, and visualization of the vessel condition. Then, we propose an image-based gating method that improves the performance of the preexisting methods, delivering a gating in an appropriate time for clinical practice. Methods: We propose a fully automatic method to synergically integrate motion signals from different gating methods to improve the cardiac phase estimation. Additionally, we present a local extrema identification method that provides a more accurate extraction of a cardiac phase and, also, a scheme for multiple phase extraction mandatory for elastography-type studies. Results: A comparison with three state-of-the-art methods is performed over 61 in-vivo IVUS studies including a wide range of physiological situations. The results show that the proposed strategy offers: 1) a more accurate cardiac phase extraction; 2) a lower frame oversampling and/or omission in the extracted phase data (error of 1.492 ± 0.977 heartbeats per study, mean ± SD); 3) a more accurate and robust heartbeat period detection with a Bland-Altman coefficient of reproducibility (RPC) of 0.23 s, while the second closest method presents an RPC of 0.36 s. Significance: The integration of motion signals performed by our method shown an improvement of the gating accuracy and reliability.
Keywords :
bioelectric potentials; biomedical ultrasonics; blood vessels; cardiovascular system; diseases; feature extraction; medical signal detection; motion compensation; phase estimation; Bland-Altman coefficient; IVUS studies; atherosclerotic plaque assessment; cardiac motion compensation; cardiac phase estimation; cardiac phase extraction; coronary intravascular ultrasound; elastography-type studies; heartbeat period detection; image-based gating method; local extrema identification method; vessel condition; volume-based data retrieval; Electrocardiography; Frequency modulation; Harmonic analysis; Heart beat; Heart rate variability; Physiology; Gating; IVUS; Motion compensation and analysis; Ultrasound; intravascular ultrasound (IVUS); motion compensation and analysis; ultrasound;
fLanguage :
English
Journal_Title :
Biomedical Engineering, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9294
Type :
jour
DOI :
10.1109/TBME.2015.2449232
Filename :
7132741
Link To Document :
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