DocumentCode
1772097
Title
Efficient numerical reconstruction of color Doppler images of mitral regurgitation in vitro
Author
Li, W. ; Sonntag, S.J. ; Becker, M. ; Marx, N. ; Steinseifer, U. ; Merhof, D.
fYear
2014
fDate
April 29 2014-May 2 2014
Firstpage
1059
Lastpage
1062
Abstract
2D color Doppler imaging (CDI) is currently the clinical standard to assess the mitral regurgitation (MR) severity. However, due to technical and operational limitations, commonly used diagnostic approaches suffer from known shortcomings: inadequate reliability, poor reproducibility and heavy user-dependency. Aiming at improving the quality of medical assessment, an efficient numerical reconstruction of color Doppler images is presented. With help of a graphical user interface (GUI), virtual CDI of different system configurations and imaging parameters was conveniently generated in a reasonable time span. The numerical reconstruction was based on experimental results and computational fluid dynamics (CFD) simulation of a flow chamber with different orifices simulating variations of mitral insufficiency. This platform can be used to validate, evaluate and further develop existing diagnostic approaches of MR.
Keywords
computational fluid dynamics; echocardiography; graphical user interfaces; image reconstruction; medical disorders; medical image processing; reliability; ultrasonic imaging; 2D color Doppler imaging; CFD; GUI; computational fluid dynamics; flow chamber; graphical user interface; medical assessment; mitral regurgitation in vitro; numerical reconstruction; orifice simulating variations; reliability; system configurations; virtual CDI; Computational fluid dynamics; Computational modeling; Doppler effect; Image color analysis; Image reconstruction; Imaging; Solid modeling; Simulation of color Doppler imaging; efficient reconstruction; mitral regurgitation;
fLanguage
English
Publisher
ieee
Conference_Titel
Biomedical Imaging (ISBI), 2014 IEEE 11th International Symposium on
Conference_Location
Beijing
Type
conf
DOI
10.1109/ISBI.2014.6868056
Filename
6868056
Link To Document