Literature DB >> 2766511

Three-dimensional echocardiographic reconstruction of the mitral valve, with implications for the diagnosis of mitral valve prolapse.

R A Levine1, M D Handschumacher, A J Sanfilippo, A A Hagege, P Harrigan, J E Marshall, A E Weyman.   

Abstract

Mitral valve prolapse has been diagnosed by two-dimensional echocardiographic criteria with surprising frequency in the general population, even when preselected normal subjects are examined. In most of these individuals, however, prolapse appears in the apical four-chamber view and is absent in roughly orthogonal long-axis views. Previous studies of in vitro models with nonplanar rings have shown that systolic mitral annular nonplanarity can potentially produce this discrepancy. However, to prove directly that apparent leaflet displacement in a two-dimensional view does not constitute true displacement above the three-dimensional annulus requires reconstruction of the entire mitral valve, including leaflets and annulus. Such reconstruction would also be necessary to explore the complex geometry of the valve and to derive volumetric measures of superior leaflet displacement. A technique was therefore developed and validated in vitro for three-dimensional reconstruction of the entire mitral valve. In this technique, simultaneous real-time acquisition of images and their spatial locations permits reconstruction of a localized structure by minimizing the effects of patient motion and respiration. By applying this method to 15 normal subjects, a coherent mitral valve surface could be reconstructed from intersecting scans. The results confirm mitral annular nonplanarity in systole, with a maximum deviation of 1.4 +/- 0.3 cm from planarity. They directly show that leaflets can appear to ascend above the mitral annulus in the apical four-chamber view, as they did in at least one view in all subjects, without actual leaflet displacement above the entire mitral valve in three dimensions, thereby challenging the diagnosis of prolapse by isolated four-chamber view displacement in otherwise normal individuals. This technique allows us to address a uniquely three-dimensional problem with high resolution and provide new information previously unavailable from the two-dimensional images. This new appreciation should enhance our ability to ask appropriate clinical questions relating mitral valve shape and leaflet displacement to clinical and pathologic consequences.

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Year:  1989        PMID: 2766511     DOI: 10.1161/01.cir.80.3.589

Source DB:  PubMed          Journal:  Circulation        ISSN: 0009-7322            Impact factor:   29.690


  106 in total

1.  Performance of a Fourier-based program for three-dimensional reconstruction of the mitral annulus on application to sparse, noisy data.

Authors:  S Ratanasopa; E L Bolson; F H Sheehan; J A McDonald; G Bashein
Journal:  Int J Card Imaging       Date:  1999-08

Review 2.  Three dimensional echocardiography for the assessment of mitral valve disease.

Authors:  N Sutaria; D Northridge; N Masani; N Pandian
Journal:  Heart       Date:  2000-11       Impact factor: 5.994

3.  Gastric emptying measured by ultrasonography.

Authors:  Odd Helge Gilja; Trygve Hausken; Svein degaard; Arnold Berstad
Journal:  World J Gastroenterol       Date:  1999-04       Impact factor: 5.742

4.  A locus for autosomal dominant mitral valve prolapse on chromosome 11p15.4.

Authors:  Lisa A Freed; James S Acierno; Daisy Dai; Maire Leyne; Jane E Marshall; Francesca Nesta; Robert A Levine; Susan A Slaugenhaupt
Journal:  Am J Hum Genet       Date:  2003-04-21       Impact factor: 11.025

5.  Evaluation of mitral valve prolapse using newly developed real-time three-dimensional echocardiographic system with real-time volume rendering.

Authors:  Omer Goktekin; Makoto Matsumura; Ryozo Omoto; Shunei Kyo; Tsuyoshi Mochizuki
Journal:  Int J Cardiovasc Imaging       Date:  2003-02       Impact factor: 2.357

6.  The unique mechanism of functional mitral regurgitation in acute myocardial infarction: a prospective dynamic 4D quantitative echocardiographic study.

Authors:  Toshiyuki Kimura; Véronique L Roger; Nozomi Watanabe; Sergio Barros-Gomes; Yan Topilsky; Shun Nishino; Yoshisato Shibata; Maurice Enriquez-Sarano
Journal:  Eur Heart J Cardiovasc Imaging       Date:  2019-04-01       Impact factor: 6.875

Review 7.  Assessment of mitral regurgitation.

Authors:  T Irvine; X K Li; D J Sahn; A Kenny
Journal:  Heart       Date:  2002-11       Impact factor: 5.994

Review 8.  Degenerative mitral valve disease with emphasis on mitral valve prolapse.

Authors:  D Pellerin; S Brecker; C Veyrat
Journal:  Heart       Date:  2002-11       Impact factor: 5.994

9.  Development of a semi-automated method for mitral valve modeling with medial axis representation using 3D ultrasound.

Authors:  Alison M Pouch; Paul A Yushkevich; Benjamin M Jackson; Arminder S Jassar; Mathieu Vergnat; Joseph H Gorman; Robert C Gorman; Chandra M Sehgal
Journal:  Med Phys       Date:  2012-02       Impact factor: 4.071

Review 10.  Three-dimensional echocardiography. New possibilities in mitral valve assessment.

Authors:  Jorge Solis; Marta Sitges; Robert A Levine; Judy Hung
Journal:  Rev Esp Cardiol       Date:  2009-02       Impact factor: 4.753

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