1. Predicting high-risk pre-capillary pulmonary hypertension: an echocardiographic multiparameter scoring index
- Author
-
Yanan Zhai, Aili Li, Xincao Tao, Qian Gao, Wanmu Xie, Yu Zhang, Aihong Chen, Chi Wang, Jieping Lei, Shangwei Ding, Yantong Cai, and Zhenguo Zhai
- Subjects
Echocardiography ,Pulmonary hypertension ,Right ventricule, Scoring index, risk stratification ,Diseases of the circulatory (Cardiovascular) system ,RC666-701 - Abstract
Abstract Background The risk stratification of pulmonary arterial hypertension proposed by the European Society of Cardiology /European Respiratory Society guidelines in 2015 and 2022 included two to three echocardiographic indicators. However, the specific value of echocardiography in risk stratification of pre-capillary pulmonary hypertension (pcPH) has not been efficiently demonstrated. Given the complex geometry of the right ventricular (RV) and influencing factors of echocardiographic parameter, there is no single echocardiographic parameter that reliably informs about PH status. We hypothesize that a multi-parameter comprehensive index can more accurately evaluate the severity of the pcPH. The purpose of this study was to develop and validate an echocardiographic risk score model to better assist clinical identifying high risk of pcPH during initial diagnosis and follow-up. Methods We studied 197 consecutive patients with pcPH. A multivariable echocardiographic model was constructed to predict the high risk of pcPH in the training set. Points were assigned to significant risk factors in the final model based on β-coefficients. We validated the model internally and externally. Results The echocardiographic score was constructed by multivariable logistic regression, which showed that pericardial effusion, right atrial (RA) area, RV outflow tract proximal diameter (RVOT-Prox), the velocity time integral of the right ventricular outflow tract (TVIRVOT) and S’ were predictors of high risk of pcPH. The area under curve (AUC) of the training set of the scoring model was 0.882 (95%CI: 0.809–0.956, p
- Published
- 2024
- Full Text
- View/download PDF