Impact of impinging wall jet on color Doppler quantification of mitral regurgitation.
- 1 August 1991
- journal article
- abstracts
- Published by Wolters Kluwer Health in Circulation
- Vol. 84 (2) , 712-720
- https://doi.org/10.1161/01.cir.84.2.712
Abstract
BACKGROUND In clinical color Doppler examinations, mitral regurgitant jets are often observed to impinge on the left atrial wall immediately beyond the mitral valve. In accordance with fluid dynamics theory, we hypothesized that a jet impinging on a wall would lose momentum more rapidly, undergo spatial distortion, and thus have a different observed jet area from that of a free jet with an identical flow rate. METHODS AND RESULTS To test this hypothesis in vivo, we studied 44 patients with mitral regurgitation--30 with centrally directed free jets and 14 with eccentrically directed impinging wall jets. Maximal color jet areas (cm2) (with and without correction for left atrial size) were correlated with mitral regurgitant volumes, flow rates, and fractions derived from pulsed Doppler mitral and aortic forward flows. The groups were compared by analysis of covariance. Mean +/- SD mitral regurgitant fraction, regurgitant volume, and mean flow rate averaged 37 +/- 17%, 3.06 +/- 2.65 l/min, and 147 +/- 118 ml/sec, respectively. The maximal jet area from color Doppler imaging correlated relatively well with the mitral regurgitant fraction in the patients with free mitral regurgitant jets (r = 0.74, p less than 0.0001) but poorly in the patients with impinging wall jets (r = 0.42, p = NS). Although the mitral regurgitant fraction was larger (p less than 0.05) in patients with wall jets (44 +/- 20%) than in those with free jets (33 +/- 15%), the maximal jet area was significantly smaller (4.78 +/- 2.87 cm2 for wall jets versus 9.17 +/- 6.45 cm2 for free jets, p less than 0.01). For the same regurgitant fraction, wall jets were only approximately 40% of the size of a corresponding free jet, a difference confirmed by analysis of covariance (p less than 0.0001). CONCLUSIONS Patients with mitral regurgitation frequently have jets that impinge on the left atrial wall close to the mitral valve. Such impinging wall jets are less predictable and usually have much smaller color Doppler areas in conventional echocardiographic views than do free jets of similar regurgitant severity. Jet morphology should be considered in the semiquantitative interpretation of mitral regurgitation by Doppler color flow mapping. Future studies of the three-dimensional morphology of wall jets may aid in their assessment.Keywords
This publication has 17 references indexed in Scilit:
- Three-dimensional shape of wall jets and free jets: Implication for quantitation of valvular regurgitation by color Doppler imagingJournal of the American College of Cardiology, 1990
- Instrumentation and physical factors related to visualization of stenotic and regurgitant jets by Doppler color flow mappingJournal of the American College of Cardiology, 1988
- Computer analysis of Doppler color flow mapping images for quantitative assessment of in vitro fluid JetsJournal of the American College of Cardiology, 1988
- Intraoperative Doppler color flow mapping for assessment of valve repair for mitral regurgitationThe American Journal of Cardiology, 1987
- Semiquantitative grading of severity of mitral regurgitation by real-time two-dimensional Doppler flow imaging techniqueJournal of the American College of Cardiology, 1986
- Variable effects of changes in flow rate through the aortic, pulmonary and mitral valves on valve area and flow velocity: Impact on quantitative doppler flow calculationsJournal of the American College of Cardiology, 1985
- Quantification of mitral valvular incompetenceCatheterization and Cardiovascular Diagnosis, 1985
- Limitations of qualitative angiographic grading in aortic or mitral regurgitationThe American Journal of Cardiology, 1984
- The development of real-time two-dimensional doppler echocardiography and its clinical significance in acquired valvular diseases With special reference to the evaluation of valvular regurgitation.Japanese Heart Journal, 1984
- The Turbulent Wall Jet Measurements and ModelingAnnual Review of Fluid Mechanics, 1983