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Digital three-dimensional model reconstruction of the cardiac cavity / 中国组织工程研究
Chinese Journal of Tissue Engineering Research ; (53): 7967-7973, 2014.
Article Dans Chinois | WPRIM | ID: wpr-458563
ABSTRACT

BACKGROUND:

Digital three-dimensional model which can reflect the fine structure of the chambers inside heart not only enhances the understanding of cardiac physiology, but also provides basic medical data for the study of cardiac electrophysiology simulation and endocardial electrophysiological mapping navigation.

OBJECTIVE:

To construct the digital three-dimensional model of cardiac cavity from sectional data and in conformity with the actual anatomical structure.

METHODS:

Image segmentation was accomplished in MATLAB environment. Firstly, registration of human cardiac cavity slice dataset was realized. Secondly, classifying each composition was achieved by clustering method according to color characteristics of the image. Then, both cardiac cavity and related connected region was distinguished by region growing method. At last, the processed image was reconstructed through dedicated medical processing software into three-dimensional model of the cardiac cavity. RESULTS AND

CONCLUSION:

The proposed method could reconstruct quite exquisite three-dimensional model of the cardiac cavity. In models, left and right atrial and ventricular structure was clear. Aorta and superior vena cava were visible. Three tricuspid and mitral valve were also observed. Results indicated that reconstructed model can reflect the anatomical characteristics of cardiac cavity accurately, and provide basic medical data for the study on electrophysiological simulation and endocardial electric mapping.

Texte intégral: Disponible Indice: WPRIM (Pacifique occidental) Type d'étude: Étude pronostique langue: Chinois Texte intégral: Chinese Journal of Tissue Engineering Research Année: 2014 Type: Article

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Texte intégral: Disponible Indice: WPRIM (Pacifique occidental) Type d'étude: Étude pronostique langue: Chinois Texte intégral: Chinese Journal of Tissue Engineering Research Année: 2014 Type: Article