Noninvasive estimation of right ventricular systolic pressure by Doppler ultrasound in patients with tricuspid regurgitation.
- 1 October 1984
- journal article
- research article
- Published by Wolters Kluwer Health in Circulation
- Vol. 70 (4), 657-662
- https://doi.org/10.1161/01.cir.70.4.657
Abstract
We evaluated the accuracy of a noninvasive method for estimating right ventricular systolic pressures in patients with tricuspid regurgitation detected by Doppler ultrasound. Of 62 patients with clinical signs of elevated right-sided pressures, 54 (87%) had jets of tricuspid regurgitation clearly recorded by continuous-wave Doppler ultrasound. By use of the maximum velocity (V) of the regurgitant jet, the systolic pressure gradient (delta P) between right ventricle and right atrium was calculated by the modified Bernoulli equation (delta P = 4V2). Adding the transtricuspid gradient to the mean right atrial pressure (estimated clinically from the jugular veins) gave predictions of right ventricular systolic pressure that correlated well with catheterization values (r = .93, SEE = 8 mm Hg). The tricuspid gradient method provides an accurate and widely applicable method for noninvasive estimation of elevated right ventricular systolic pressures.This publication has 22 references indexed in Scilit:
- Noninvasive assessment of right ventricular systolic pressure in atrial septal defect: Analysis of the end-systolic configuration of the ventricular septum by two-dimensional echocardiographyThe American Journal of Cardiology, 1984
- Range gated Doppler ultrasound detection of contrast echographic microbubbles for cardiac and great vessel blood flow patternsAmerican Heart Journal, 1981
- Pulsed doppler echocardiographic detection of right-sided valve regurgitationThe American Journal of Cardiology, 1981
- Non-invasive assessment of aortic stenosis by Doppler ultrasound.Heart, 1980
- Noninvasive assessment of pressure drop in mitral stenosis by Doppler ultrasound.Heart, 1978
- Determination of Effective Orifice Area in Mitral Stenosis from Non‐invasive Ultrasound Doppler Data and Mitral Flow RateActa Medica Scandinavica, 1977
- Determination of Pressure Gradient in Mitral Stenosis with a Non‐invasive Ultrasound Doppler TechniqueActa Medica Scandinavica, 1976
- Echocardiographic features of primary pulmonary hypertensionThe American Journal of Cardiology, 1974
- Auscultatory and phonocardiographic manifestations of pulmonary hypertensionProgress in Cardiovascular Diseases, 1967
- Physiological Interpretation of the Plain Radiograph in Mitral Stenosis, including a Review of Criteria for the Radiological Estimation of Pulmonary Arterial and Venous PressuresThe British Journal of Radiology, 1963