Key result
Right heart catheterization-derived measurements of right ventricular function were feasible to obtain from single-beat pressure-volume loops and detected changes following prostacyclin therapy.
Why the study?
Current methods to determine RV function require temporal measurements of pressure and volume, prompting investigation into using clinical RHC measurements instead.
Can right heart catheterization-derived single-beat pressure-volume loops accurately estimate right ventricular systolic and diastolic function and detect therapeutic changes in patients with pulmonary arterial hypertension?
Cohort (n=53)
Can right heart catheterization-derived single-beat pressure-volume loops accurately estimate right ventricular systolic and diastolic function and detect therapeutic changes in patients with pulmonary arterial hypertension?
It is feasible to assess right ventricular systolic and diastolic function, and detect therapeutic changes, using single-beat pressure-volume loops derived from standard clinical right heart catheterization.
RHC-derived RV metrics may aid PAH monitoring; leaves open larger trials to confirm clinical utility.
Right ventricular (RV) function strongly associates with mortality in patients with pulmonary arterial hypertension (PAH). Current methods to determine RV function require temporal measurements of pressure and volume. The aim of the study was to investigate the feasibility of using right heart catheterization (RHC) measurements to estimate systolic and diastolic RV function. RV pressure and volume points were fit to P = α(e βV ‐1) to assess diastolic stiffness coefficient (β) and end‐diastolic elastance (Eed). Single‐beat methods were used to assess RV contractility (Ees). The effects of a non‐zero unstressed RV volume (V 0 ), RHC‐derived stroke volume (SV RHC ), and normalization of the end‐diastolic volume (EDV) on estimates of β, Eed, and Ees were tested using Bland–Altman analysis in an incident PAH cohort (n = 32) that had both a RHC and cardiac magnetic resonance (CMR) test. RHC‐derived measures of RV function were used to detect the effect of prostacyclin therapy in an incident PAH cohort and the severity of PAH in prevalent PAH (n = 21). A non‐zero V 0 had a minimal effect on β with a small bias and limits of agreement (LOA). Stroke volume (SV) significantly influenced estimates of β and Ees with a large LOA. Normalization of EDV had minimal effect on both β and Eed. RHC‐derived β and Eed increased due to the severity of PAH and decreased due to three months of prostacyclin therapy. It is feasible to detect therapeutic changes in specific stiffness and elastic properties of the RV from signal‐beat pressure‐volume loops by using RHC‐derived SV and normalizing RV EDV.
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Vanderpool et al. (2019) conducted a cohort in Pulmonary arterial hypertension (n=53). Right heart catheterization (RHC) derived measurements was evaluated on Estimates of systolic and diastolic RV function (diastolic stiffness coefficient, end-diastolic elastance, and RV contractility). Right heart catheterization-derived measurements of right ventricular function were feasible to obtain from single-beat pressure-volume loops and detected changes following prostacyclin therapy.
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