PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
September 13, 2011Heart321 citations

Right ventriculo-arterial coupling in pulmonary hypertension: a magnetic resonance study

View Full Paper
JSJavier SanzAGAna García‐ÁlvarezLFLeticia Fernández‐Friera

Key Result

Non-invasive estimation of right ventriculo-arterial coupling using CMR (ESV/SV) increased across pulmonary hypertension severity quartiles (0.75 to 3.51; p<0.001), indicating severe uncoupling.

Key Points

  • This research aims to quantify right ventriculo-arterial coupling in pulmonary hypertension using both invasive and non-invasive methods.
  • Cross-sectional analysis of a retrospective cohort of 139 adults referred for pulmonary hypertension evaluation.
  • Combination of cardiac magnetic resonance and right heart catheterization conducted within 2 days.
  • Right ventriculo-arterial coupling quantified using the ratio of effective elastance and end-systolic elastance.
  • Effective elastance (E(a)) increased linearly with pulmonary vascular resistance quartiles (0.19 to 1.63 mm Hg/ml/m(2), p<0.001 for trend).
  • End-systolic elastance (E(max)) showed a tendency to decrease (0.52 to 0.56 mm Hg/ml/m(2); p=0.7).
  • The ratio E(a)/E(max) significantly increased in severe hypertension (0.35 to 2.85; p<0.001), reflecting uncoupling.

Study Design

Type

Cross-Sectional (n=139)

Multicenter

No

Structured PICO

Can right ventriculo-arterial coupling in pulmonary hypertension be quantified by combining standard RHC and CMR, and estimated non-invasively with CMR alone?

P
Population
139 adults referred for pulmonary hypertension evaluation who underwent cardiac magnetic resonance and right heart catheterisation within 2 days.
E
Exposure
Cardiac magnetic resonance (CMR) and right heart catheterisation (RHC) within 2 days
O
Outcome
Right ventriculo-arterial coupling quantified as the ratio of pulmonary artery effective elastance (Ea) to right ventricular maximal end-systolic elastance (Emax)surrogate

Right ventriculo-arterial coupling in pulmonary hypertension can be assessed non-invasively using CMR-derived ESV/SV, which correlates with invasive measurements of uncoupling as disease severity increases.

Main Result

p-value: p=<0.001

Abstract

OBJECTIVE: To quantify right ventriculo-arterial coupling in pulmonary hypertension by combining standard right heart catheterisation (RHC) and cardiac magnetic resonance (CMR) and to estimate it non-invasively with CMR alone. DESIGN: Cross-sectional analysis in a retrospective cohort of consecutive patients. SETTING: Tertiary care centre. PATIENTS: 139 adults referred for pulmonary hypertension evaluation. INTERVENTIONS: CMR and RHC within 2 days (n=151 test pairs). MAIN OUTCOME MEASURES: Right ventriculo-arterial coupling was quantified as the ratio of pulmonary artery (PA) effective elastance (E(a), index of arterial load) to right ventricular maximal end-systolic elastance (E(max), index of contractility). Right ventricular end-systolic volume (ESV) and stroke volume (SV) were obtained from CMR and adjusted to body surface area. RHC provided mean PA pressure (mPAP) as a surrogate of right ventricular end-systolic pressure, pulmonary capillary wedge pressure (PCWP) and pulmonary vascular resistance index (PVRI). E(a) was calculated as (mPAP - PCWP)/SV and E(max) as mPAP/ESV. RESULTS: E(a) increased linearly with advancing severity as defined by PVRI quartiles (0.19, 0.50, 0.93 and 1.63 mm Hg/ml/m(2), respectively; p<0.001 for trend) whereas E(max) increased initially and subsequently tended to decrease (0.52, 0.67, 0.54 and 0.56 mm Hg/ml/m(2); p=0.7). E(a)/E(max) was maintained early but increased markedly with severe hypertension (0.35, 0.72, 1.76 and 2.85; p<0.001), indicating uncoupling. E(a)/E(max) approximated non-invasively with CMR as ESV/SV was 0.75, 1.17, 2.28 and 3.51, respectively (p<0.001). CONCLUSIONS: Right ventriculo-arterial coupling in pulmonary hypertension can be studied with standard RHC and CMR. Arterial load increases with disease severity whereas contractility cannot progress in parallel, leading to severe uncoupling.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Sanz et al. (2011) conducted a cross-sectional in pulmonary hypertension (n=139). Cardiac magnetic resonance (CMR) vs. Right heart catheterisation (RHC) was evaluated on Right ventriculo-arterial coupling (E(a)/E(max)) (p=<0.001). Non-invasive estimation of right ventriculo-arterial coupling using CMR (ESV/SV) increased across pulmonary hypertension severity quartiles (0.75 to 3.51; p<0.001), indicating severe uncoupling.

synapsesocial.com/papers/6a1feed4f35583189204b45chttps://doi.org/10.1136/heartjnl-2011-300462
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Pulmonary Hypertension: Accuracy of Detection with Left Ventricular Septal-to–Free Wall Curvature Ratio Measured at Cardiac MR2007 · 141 citations
  2. 2Human right ventricular end-systolic pressure-volume relation defined by maximal elastance.1988 · 105 citations
  3. 3Effective arterial elastance as index of arterial vascular load in humans.1992 · 834 citations
  4. 4Effective arterial elastance as an index of pulmonary vascular load2008 · 91 citations
  5. 5Guidelines for the diagnosis and treatment of pulmonary hypertension2009 · 3,872 citations