Title :
Applications of three dimensional echocardiography beyond the left ventricle: other chambers and structural detail
Author :
Sheehan, Fh ; Bolson, E.L. ; McDonald, Ja
Author_Institution :
Washington Univ., Seattle, WA, USA
Abstract :
The authors´ system for quantitative three-dimensional echocardiography (3D echo) now enables analysis of all four heart chambers, valves and associated structures. After image acquisition using freehand scanning and a magnetic field tracking device, the borders of cardiac structures are manually traced Chambers are reconstructed with a piecewise smooth subdivision surface. The mitral and tricuspid annuli are fitted using a 4 term Fourier series. Other valves and orifices are reconstructed as ellipses. Anatomic labeling enables identification of the chordae, coronary sinus, intervalvular fibrosa, septum, and right and left ventricular apex. The dimensions, shape, and function of cardiac components and the spatial relationships between them such as distance and angle can be determined. These methods provide capability and flexibility for clinical applications such as modeling heart motion, investigating the mechanism of functional mitral regurgitation, and tracking left ventricular remodeling
Keywords :
Fourier series; echocardiography; image motion analysis; image reconstruction; medical image processing; physiological models; 4 term Fourier series; anatomic labeling; chordae; clinical applications; coronary sinus; heart chambers; heart motion modeling; intervalvular fibrosa; left ventricle; left ventricular apex; medical diagnostic imaging; mitral annuli; piecewise smooth subdivision surface; right ventricular apex; septum; structural detail; three dimensional echocardiography; tricuspid annuli; Echocardiography; Fourier series; Heart valves; Image reconstruction; Labeling; Magnetic analysis; Magnetic fields; Orifices; Shape; Surface reconstruction;
Conference_Titel :
Computers in Cardiology 2000
Conference_Location :
Cambridge, MA
Print_ISBN :
0-7803-6557-7
DOI :
10.1109/CIC.2000.898470