DocumentCode
2477071
Title
P2A-10 Identification of Heart Wall Based on Coherence of Ultrasonic RF Echoes Evaluated in Frequency Domain
Author
Kinugawa, Takaomi ; Hasegawa, Hideyuki ; Kanai, Hiroshi
Author_Institution
Tohoku Univ., Sendai
fYear
2007
fDate
28-31 Oct. 2007
Firstpage
1496
Lastpage
1499
Abstract
In the ultrasonic tomographic images, the heart wall cannot be distinguished from the cardiac lumen automatically using only the echogenicity, which corresponds to the amplitude of the RF echo, because the echogenicity inside the heart wall is as low as that in the lumen. In this paper ultrasonic RF echoes from the heart wall and lumen were analyzed in frequency domain in order to distinguish the heart wall from the lumen automatically. Temporal change in complex frequency spectra was evaluated using magnitude-squared coherence function. The coherence function of the RF signal scattered from the interventricular septum (IVS) is high. In contrast, the coherence function in the right ventricle (RV) and left ventricle (LV) is low because the scatterers (blood cells) slipped off from the focal area of the ultrasonic beam by blood flow. For automated identification of the heart wall using the coherence function, the optimal threshold T0 for the coherence function should be determined. In this study, based on the Bayes decision rule, the optimum value of To is determined. Although the coherence function of the region near the anterior wall in the RV is as high as that in the IVS due to echoes from the external tissue resulting from the sidelobe, the artifact can be reduced by removing the static component from RF echoes before evaluation of the coherence function. In vivo experimental results show the differentiation of the heart wall from the lumen was improved using the proposed method.
Keywords
biomedical ultrasonics; blood vessels; cardiology; medical image processing; blood vessels; cardiac lumen; heart wall identification; interventricular septum; ultrasonic RF echoes; ultrasonic tomographic image; Blood; Brightness; Frequency domain analysis; Heart; Radio frequency; Radiofrequency identification; Reflection; Sampling methods; Scattering; Tomography;
fLanguage
English
Publisher
ieee
Conference_Titel
Ultrasonics Symposium, 2007. IEEE
Conference_Location
New York, NY
ISSN
1051-0117
Print_ISBN
978-1-4244-1384-3
Electronic_ISBN
1051-0117
Type
conf
DOI
10.1109/ULTSYM.2007.376
Filename
4409949
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