DocumentCode
1672939
Title
Automated estimation of regurgitant volume and effective orifice area from color Doppler echocardiography
Author
Greenberg, Neil L. ; Prior, David L. ; Firstenberg, Michael S. ; Garcia, Mario J. ; Thomas, James D.
Author_Institution
Cardiovascular Imaging Center, Cleveland Clinic Found., OH, USA
fYear
1999
fDate
6/21/1905 12:00:00 AM
Firstpage
619
Lastpage
622
Abstract
Color Doppler echocardiographic evaluation of valve regurgitation could be improved using a quantitative approach. While techniques have been proposed and utilized in research, their limitations restrict widespread clinical utilization. We have developed an approach to address several of these limitations and have tested the methodology in an in vitro model with flow through restrictive orifices under a wide range of operating conditions. Doppler images of flow velocities along the centerline path through the orifice were digitally acquired and processed to extract the distance (IAD) between aliasing boundaries proximal to the orifice. Flow rate and effective orifice area were computed from each IAD and compared to reference measurements. Calculated e (y=1.07x-22.8, r=0.97) and EOA (y=1.09x-0.03, r=0.98) demonstrated strong agreement with reference measurements. The IAD technique may improve the estimation of regurgitant volume and effective orifice area
Keywords
Doppler measurement; blood flow measurement; cardiovascular system; echocardiography; medical image processing; Doppler images; aliasing boundaries; automated estimation; centerline path; clinical utilization; color Doppler echocardiography; effective orifice area; flow rate; flow velocities; in vitro model; operating conditions; quantitative approach; reference measurements; regurgitant volume; restrictive orifices; valve regurgitation; Area measurement; Cardiology; Convergence; Echocardiography; Equations; Fluid flow measurement; In vitro; Orifices; Q measurement; Valves;
fLanguage
English
Publisher
ieee
Conference_Titel
Computers in Cardiology, 1999
Conference_Location
Hannover
ISSN
0276-6547
Print_ISBN
0-7803-5614-4
Type
conf
DOI
10.1109/CIC.1999.826047
Filename
826047
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