DocumentCode :
1706103
Title :
Three-dimensional reconstruction of LV endocardial surfaces from echocardiographic images using deformable shell models
Author :
Lin, Remin ; Chen, Shiuh-Yung J. ; Mor-Avi, Victor ; Bednarz, James ; Chin-Tu Chen ; Lang, Roberto M.
Author_Institution :
Chicago Univ., IL, USA
fYear :
1996
Firstpage :
697
Lastpage :
700
Abstract :
The authors developed computer software for three-dimensional (3D) reconstruction, of left ventricular endocardial surfaces throughout the cardiac cycle from ultrasound images acquired using a recently developed transthoracic multiplane transducer. The border between endocardial tissue and blood as automatically detected using Acoustic Quantification (AQ). A deformable wire-frame model was initialized and deformed to fit the AQ endocardial boundaries and generate a sequence of smooth 3D endocardial surfaces by interpolation from the deformed wire-frames. Fairly smooth endocardial surfaces in motion were reconstructed from scattered, noisy 3D data. Rendering results mere independently verified as realistic by three separate cardiologists. Reconstruction time ranged between 5-10 minutes. Due to the noninvasive and real-time character of AQ technology and the efficiency of this new algorithm, this technique provides an excellent alternative for fast 3D reconstruction of LV endocardial motion.
Keywords :
acoustic signal processing; echocardiography; edge detection; image reconstruction; medical image processing; motion estimation; physiological models; surface topography measurement; 5 to 10 min; LV endocardial surfaces reconstruction; acoustic quantification; blood; cardiac cycle; deformable shell models; deformed wire-frames; echocardiographic images; fairly smooth endocardial surfaces; medical diagnostic imaging; scattered noisy 3D data; three-dimensional reconstruction; transthoracic multiplane transducer; ultrasound images; Acoustic signal detection; Acoustic transducers; Blood; Deformable models; Image reconstruction; Software; Surface fitting; Surface reconstruction; Ultrasonic imaging; Ultrasonic transducers;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computers in Cardiology, 1996
Conference_Location :
Indianapolis, IN, USA
ISSN :
0276-6547
Print_ISBN :
0-7803-3710-7
Type :
conf
DOI :
10.1109/CIC.1996.542632
Filename :
542632
Link To Document :
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