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  3. Quantification of Multiple Mitral Regurgitant Jets: An In Vitro Validation Study Comparing Two- and Three-Dimensional Proximal Isovelocity Surface Area Methods
 

Quantification of Multiple Mitral Regurgitant Jets: An In Vitro Validation Study Comparing Two- and Three-Dimensional Proximal Isovelocity Surface Area Methods

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BORIS DOI
10.7892/boris.99216
Publisher DOI
10.1016/j.echo.2016.12.012
PubMed ID
28274714
Description
BACKGROUND: The accuracy of the proximal isovelocity surface area (PISA) method for the quantification of mitral regurgitation (MR), in the case of multiple jets, is unknown. The aim of this study was to evaluate different two-dimensional (2D) and three-dimensional (3D) PISA methods using 3D color Doppler data sets.
METHODS: Several regurgitant volumes (Rvols) were simulated using a pulsatile pump connected to a phantom equipped with single and double regurgitant orifices of different sizes and interspaces. A flowmeter served as the reference method. Transthoracic (TTE) and transoesophageal echocardiography (TEE) were used to acquire the 3D data sets. Offline, Rvols were calculated by 2D PISA methods based on hemispheric and hemicylindric assumptions and by 3D integrated PISA.
RESULTS: A fusion of the PISA was observed in the setting of narrow-spaced regurgitant orifices; compared with flowmeter, Rvol was underestimated using the single hemispheric PISA model (TTE: Bland-Altman bias ± limit of agreement, -17.5 ± 8.9 mL; TEE: -15.9 ± 7.3 mL) and overestimated using the double hemispheric PISA model (TTE: +7.1 ± 14.6 mL; TEE: +10.4 ± 11.9 mL). The combined approach (hemisphere for single orifice, hemicylinder with two bases for nonfused PISAs, and hemicylinder with one base for fused PISAs) was more precise (TTE: -3.4 ± 6.3 mL; TEE: -1.9 ± 5.6 mL). Three-dimensional integrated PISA was the most accurate method to quantify Rvol (TTE: -2.1 ± 6.5 mL; TEE -3.2 ± 4.8 mL).
CONCLUSIONS: In the setting of double MR orifices, the 2D combined approach and integrated 3D PISA appear to be superior as compared with the conventional hemispheric method, thus providing tools for the challenging quantification of MR with multiple jets.
Date of Publication
2017-05
Publication Type
Article
Subject(s)
600 Technology > 610 Medicine & health
500 Science > 570 Life sciences; biology
Language(s)
en
Contributor(s)
Zürcher, Fabian Johann
Universitätsklinik für Kardiologie
Brugger, N
Jahren, Silje Ekrollorcid-logo
ARTORG - Cardiovascular Engineering (CVE)
De Marchi, Stefanoorcid-logo
Universitätsklinik für Kardiologie
Seiler, Christian
Universitätsklinik für Kardiologie
Additional Credits
ARTORG - Cardiovascular Engineering (CVE)
Universitätsklinik für Kardiologie
Series
Journal of the American Society of Echocardiography
Publisher
Elsevier
ISSN
0894-7317
Title of Event
Swiss Cardio Annular Meeting 2017
Access(Rights)
restricted
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