Key result
Doppler echocardiography estimation of sPAP yields an AUC of 0.98 for diagnosing pulmonary hypertension versus RHC.
Why the study?
Noninvasive assessment of pulmonary artery systolic pressure by Doppler echocardiography has been widely adopted to screen for pulmonary hypertension, but overestimation or underestimation remains frequent.
Does Doppler echocardiography accurately estimate pulmonary artery systolic pressure compared to right heart catheterization in patients suspected of pulmonary hypertension?
Cross-Sectional (n=218)
Blinded analysis
No
Does Doppler echocardiography accurately estimate pulmonary artery systolic pressure compared to right heart catheterization in patients suspected of pulmonary hypertension?
Effect estimate: AUC 0.98, r = 0.781
p-value: p=<0.001
Doppler echocardiography is highly accurate for estimating pulmonary artery systolic pressure and screening for pulmonary hypertension, though its accuracy is affected by TR signal quality, actual sPAP level, and PAWP.
Echocardiography may support sPAP screening in suspected PH; leaves open prospective validation accounting for TR quality and PAWP.
Background Noninvasive assessment of pulmonary artery systolic pressure by Doppler echocardiography (sPAP ECHO ) has been widely adopted to screen for pulmonary hypertension (PH), but there is still a high proportion of overestimation or underestimation of sPAP ECHO . We therefore aimed to explore the accuracy and influencing factors of sPAP ECHO with right heart catheterization (RHC) as a reference. Methods A total of 218 highly suspected PH patients who underwent RHC and echocardiography within 7 days were included. The correlation and consistency between tricuspid regurgitation (TR)-related methods and RHC results were tested by Pearson and Bland–Altman methods. TR-related methods included peak velocity of TR (TR Vmax), TR pressure gradient (TR-PG), TR mean pressure gradient (TR-mPG), estimated mean pulmonary artery pressure (mPAP ECHO ), and sPAP ECHO . With mPAP ≥ 25 mm Hg measured by RHC as the standard diagnostic criterion of PH, the ROC curve was used to compare the diagnostic efficacy of sPAP ECHO with other TR-derived parameters. The ratio (sPAP ECHO –sPAP RHC )/sPAP RHC was calculated and divided into three groups as follows: patients with an estimation error between − 10% and + 10% were defined as the accurate group; patients with an estimated difference greater than + 10% were classified as the overestimated group; and patients with an estimation error greater than − 10% were classified as the underestimated group. The influencing factors of sPAP ECHO were analyzed by ordinal regression analysis. Results sPAP ECHO had the highest correlation coefficient (r = 0.781, P < 0.001), best diagnostic efficiency (AUC = 0.98), and lowest bias (mean bias = 0.07 mm Hg; 95% limits of agreement, − 32.08 to + 32.22 mm Hg) compared with other TR-related methods. Ordinal regression analysis showed that TR signal quality, sPAP RHC level, and pulmonary artery wedge pressure (PAWP) affected the accuracy of sPAP ECHO ( P < 0.05). Relative to the good signal quality, the OR values of medium and poor signal quality were 0.26 (95% CI: 0.14, 0.48) and 0.23 (95% CI: 0.07, 0.73), respectively. Compared with high sPAP RHC level, the OR values of low and medium sPAP RHC levels were 21.56 (95% CI: 9.57, 48.55) and 5.13 (95% CI: 2.55, 10.32), respectively. The OR value of PAWP was 0.94 (95% CI: 0.89, 0.99). TR severity and right ventricular systolic function had no significant effect on the accuracy of sPAP ECHO . Conclusions In this study, we found that all TR-related methods, including sPAP ECHO , had comparable and good efficiency in PH screening. To make the assessment of sPAP ECHO more accurate, attention should be paid to TR signal quality, sPAP RHC level, and PAWP.
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Lv et al. (2022) conducted a cross-sectional in Suspected pulmonary hypertension (n=218). Doppler echocardiography (sPAPECHO) vs. Right heart catheterization (RHC) was evaluated on Diagnostic efficiency (AUC) and correlation for pulmonary hypertension (AUC 0.98, r = 0.781, p=<0.001). Doppler echocardiography estimation of pulmonary artery systolic pressure showed excellent diagnostic efficiency for pulmonary hypertension (AUC 0.98) and high correlation with right heart catheterization (r=0.781).
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