PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
July 30, 2009Clinical and Translational Science44 citationsOpen Access

Phenotyping the Right Ventricle in Patients with Pulmonary Hypertension

MSMarc A. SimonCDChristopher DeibleMMMichael A. Mathier

Structured PICO

Does multimodality imaging phenotype regional and global right ventricular structural and functional changes in patients with pulmonary hypertension?

P
Population
22 patients (age 51 +/- 11, 14 females, mean pulmonary artery pressure range 13-79 mmHg) divided into three groups: Normal, pulmonary hypertension with hemodynamically compensated RV function (PH-C), and decompensated RV function (PH-D).
I
Intervention
Right heart catheterization, echocardiography, and ECG-gated multislice computed tomography of the chest for right ventricular phenotyping
C
Comparator
Comparison across three groups: Normal, PH-C (compensated), and PH-D (decompensated)
O
Outcome
Regional and global right ventricular structural and functional changes (including RV volumes, RV ejection fraction, wall thickness, fractional wall thickening, and infundibular wall stress)surrogate

Significant regional phenotypic abnormalities in the right ventricle, such as elevated infundibular wall stress, occur in pulmonary hypertension even before overt hemodynamic decompensation, potentially serving as early markers of RV failure.

Abstract

Right ventricular (RV) failure is associated with poor outcomes in pulmonary hypertension (PH). We sought to phenotype the RV in PH patients with compensated and decompensated RV function by quantifying regional and global RV structural and functional changes. Twenty-two patients (age 51 +/- 11, 14 females, mean pulmonary artery (PA) pressure range 13-79 mmHg) underwent right heart catheterization, echocardiography, and ECG-gated multislice computed tomography of the chest. Patients were divided into three groups: Normal, PH with hemodynamically compensated, and decompensated RV function (PH-C and PH-D, respectively). RV wall thickness (WT) was measured at end-diastole (ED) and end-systole (ES) in three regions: infundibulum, lateral free wall, and inferior free wall. Globally, RV volumes progressively increased from Normal to PH-C to PH-D and RV ejection fraction decreased. Regionally, WT increased and fractional wall thickening (FWT) decreased in a spatially heterogeneous manner. Infundibular wall stress was elevated and FWT was lower regardless of the status of global RV function. In PH, there are significant phenotypic abnormalities in the RV even in the absence of overt hemodynamic RV decompensation. Regional changes in RV structure and function may be early markers of patients at risk for developing RV failure.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Simon et al. (2009) studied this question.

synapsesocial.com/papers/6a71eef9a7fbea1e44088af9https://doi.org/10.1111/j.1752-8062.2009.00134.x
Ask AI
Helpful
Bookmark
Share
View Full Paper