Circulation Journal
Online ISSN : 1347-4820
Print ISSN : 1346-9843
ISSN-L : 1346-9843
Reviews
Quantification of Mitral Valve Morphology With Three-Dimensional Echocardiography
– Can Measurement Lead to Better Management? –
Alex Pui-Wai LeeFang FangChun-Na JinKevin Ka-Ho KamGary K.W. TsuiKenneth K.Y. WongJen-Li LooiRandolph H.L. WongSong WanJing Ping SunMalcolm J. UnderwoodCheuk-Man Yu
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2014 Volume 78 Issue 5 Pages 1029-1037

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Abstract

The mitral valve (MV) has complex 3-dimensional (3D) morphology and motion. Advance in real-time 3D echocardiography (RT3DE) has revolutionized clinical imaging of the MV by providing clinicians with realistic visualization of the valve. Thus far, RT3DE of the MV structure and dynamics has adopted an approach that depends largely on subjective and qualitative interpretation of the 3D images of the valve, rather than objective and reproducible measurement. RT3DE combined with image-processing computer techniques provides precise segmentation and reliable quantification of the complex 3D morphology and rapid motion of the MV. This new approach to imaging may provide additional quantitative descriptions that are useful in diagnostic and therapeutic decision-making. Quantitative analysis of the MV using RT3DE has increased our understanding of the pathologic mechanism of degenerative, ischemic, functional, and rheumatic MV disease. Most recently, 3D morphologic quantification has entered into clinical use to provide more accurate diagnosis of MV disease and for planning surgery and transcatheter interventions. Current limitations of this quantitative approach to MV imaging include labor-intensiveness during image segmentation and lack of a clear definition of the clinical significance of many of the morphologic parameters. This review summarizes the current development and applications of quantitative analysis of the MV morphology using RT3DE.  (Circ J 2014; 78: 1029–1037)

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© 2014 THE JAPANESE CIRCULATION SOCIETY
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