Literature DB >> 33655769

Right ventricular pressure-volume loop shape and systolic pressure change in pulmonary hypertension.

Manuel J Richter1, Steven Hsu2, Athiththan Yogeswaran1, Faeq Husain-Syed1, István Vadász1, Hossein A Ghofrani1,3,4, Robert Naeije5, Sebastian Harth6, Friedrich Grimminger1,7, Werner Seeger7, Henning Gall1, Ryan J Tedford8, Khodr Tello1.   

Abstract

Right ventricular (RV) function determines outcome in pulmonary arterial hypertension (PAH). RV pressure-volume loops, the gold standard for measuring RV function, are difficult to analyze. Our aim was to investigate whether simple assessments of RV pressure-volume loop morphology and RV systolic pressure differential reflect PAH severity and RV function. We analyzed multibeat RV pressure-volume loops (obtained by conductance catheterization with preload reduction) in 77 patients with PAH and 15 patients without pulmonary hypertension in two centers. Patients were categorized according to their pressure-volume loop shape (triangular, quadratic, trapezoid, or notched). RV systolic pressure differential was defined as end-systolic minus beginning-systolic pressure (ESP - BSP), augmentation index as ESP - BSP/pulse pressure, pulmonary arterial capacitance (PAC) as stroke volume/pulse pressure, and RV-arterial coupling as end-systolic/arterial elastance (Ees/Ea). Trapezoid and notched pressure-volume loops were associated with the highest afterload (Ea), augmentation index, pulmonary vascular resistance (PVR), mean pulmonary arterial pressure, stroke work, B-type natriuretic peptide, and the lowest Ees/Ea and PAC. Multivariate linear regression identified Ea, PVR, and stroke work as the main determinants of ESP - BSP. ESP - BSP also significantly correlated with multibeat Ees/Ea (Spearman's ρ: -0.518, P < 0.001). A separate retrospective analysis of 113 patients with PAH showed that ESP - BSP obtained by routine right heart catheterization significantly correlated with a noninvasive surrogate of RV-arterial coupling (tricuspid annular plane systolic excursion/pulmonary arterial systolic pressure ratio; ρ: -0.376, P < 0.001). In conclusion, pressure-volume loop shape and RV systolic pressure differential predominately depend on afterload and PAH severity and reflect RV-arterial coupling in PAH.

Entities:  

Keywords:  pressure-volume relationship; pulmonary arterial hypertension; right ventricle; right ventricle-pulmonary arterial; systolic function coupling

Mesh:

Year:  2021        PMID: 33655769      PMCID: PMC8174826          DOI: 10.1152/ajplung.00583.2020

Source DB:  PubMed          Journal:  Am J Physiol Lung Cell Mol Physiol        ISSN: 1040-0605            Impact factor:   5.464


  44 in total

1.  Single-beat estimation of right ventricular end-systolic pressure-volume relationship.

Authors:  Serge Brimioulle; Pierre Wauthy; Patricia Ewalenko; Benoît Rondelet; Françoise Vermeulen; François Kerbaul; Robert Naeije
Journal:  Am J Physiol Heart Circ Physiol       Date:  2003-01-16       Impact factor: 4.733

2.  Reflections on wave reflections in chronic thromboembolic pulmonary hypertension.

Authors:  Robert Naeije; Sandrine Huez
Journal:  Eur Heart J       Date:  2007-03-23       Impact factor: 29.983

3.  Characterisation of the normal right ventricular pressure-volume relation by biplane angiography and simultaneous micromanometer pressure measurements.

Authors:  A N Redington; H H Gray; M E Hodson; M L Rigby; P J Oldershaw
Journal:  Br Heart J       Date:  1988-01

4.  More on Single-Beat Estimation of Right Ventriculoarterial Coupling in Pulmonary Arterial Hypertension.

Authors:  Khodr Tello; Manuel J Richter; Jens Axmann; Martin Buhmann; Werner Seeger; Robert Naeije; Hossein Ardeschir Ghofrani; Henning Gall
Journal:  Am J Respir Crit Care Med       Date:  2018-09-15       Impact factor: 21.405

5.  Accurate assessment of load-independent right ventricular systolic function in patients with pulmonary hypertension.

Authors:  Pia Trip; Taco Kind; Marielle C van de Veerdonk; Johannes T Marcus; Frances S de Man; Nico Westerhof; Anton Vonk-Noordegraaf
Journal:  J Heart Lung Transplant       Date:  2012-11-17       Impact factor: 10.247

6.  Load independence of the instantaneous pressure-volume ratio of the canine left ventricle and effects of epinephrine and heart rate on the ratio.

Authors:  H Suga; K Sagawa; A A Shoukas
Journal:  Circ Res       Date:  1973-03       Impact factor: 17.367

7.  Proximal pulmonary emboli modify right ventricular ejection pattern.

Authors:  A Torbicki; M Kurzyna; M Ciurzynski; P Pruszczyk; R Pacho; A Kuch-Wocial; M Szulc
Journal:  Eur Respir J       Date:  1999-03       Impact factor: 16.671

8.  Validation of the Tricuspid Annular Plane Systolic Excursion/Systolic Pulmonary Artery Pressure Ratio for the Assessment of Right Ventricular-Arterial Coupling in Severe Pulmonary Hypertension.

Authors:  Khodr Tello; Jun Wan; Antonia Dalmer; Rebecca Vanderpool; Hossein A Ghofrani; Robert Naeije; Fritz Roller; Emad Mohajerani; Werner Seeger; Ulrike Herberg; Natascha Sommer; Henning Gall; Manuel J Richter
Journal:  Circ Cardiovasc Imaging       Date:  2019-09-10       Impact factor: 7.792

9.  Assessment of Right Ventricular Function in the Research Setting: Knowledge Gaps and Pathways Forward. An Official American Thoracic Society Research Statement.

Authors:  Tim Lahm; Ivor S Douglas; Stephen L Archer; Harm J Bogaard; Naomi C Chesler; Francois Haddad; Anna R Hemnes; Steven M Kawut; Jeffrey A Kline; Todd M Kolb; Stephen C Mathai; Olaf Mercier; Evangelos D Michelakis; Robert Naeije; Rubin M Tuder; Corey E Ventetuolo; Antoine Vieillard-Baron; Norbert F Voelkel; Anton Vonk-Noordegraaf; Paul M Hassoun
Journal:  Am J Respir Crit Care Med       Date:  2018-08-15       Impact factor: 21.405

10.  Diagnosis of pulmonary hypertension.

Authors:  Adaani Frost; David Badesch; J Simon R Gibbs; Deepa Gopalan; Dinesh Khanna; Alessandra Manes; Ronald Oudiz; Toru Satoh; Fernando Torres; Adam Torbicki
Journal:  Eur Respir J       Date:  2019-01-24       Impact factor: 16.671

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  4 in total

1.  Invasive Right Ventricular Pressure-Volume Analysis: Basic Principles, Clinical Applications, and Practical Recommendations.

Authors:  Michael I Brener; Amirali Masoumi; Vivian G Ng; Khodr Tello; Marcelo B Bastos; William K Cornwell; Steven Hsu; Ryan J Tedford; Philipp Lurz; Karl-Philipp Rommel; Karl-Patrik Kresoja; Sherif F Nagueh; Manreet K Kanwar; Navin K Kapur; Gurumurthy Hiremath; Mohammad Sarraf; Antoon J M Van Den Enden; Nicolas M Van Mieghem; Paul M Heerdt; Rebecca T Hahn; Susheel K Kodali; Gabriel T Sayer; Nir Uriel; Daniel Burkhoff
Journal:  Circ Heart Fail       Date:  2021-12-29       Impact factor: 8.790

Review 2.  The physiological basis of pulmonary arterial hypertension.

Authors:  Robert Naeije; Manuel J Richter; Lewis J Rubin
Journal:  Eur Respir J       Date:  2022-06-16       Impact factor: 33.795

3.  Defining end-systolic pressure for single-beat estimation of right ventricle-pulmonary artery coupling: simple… but not really.

Authors:  Inderjit Singh; Hannah Oakland; Ahmed Elassal; Paul M Heerdt
Journal:  ERJ Open Res       Date:  2021-08-23

Review 4.  A standardized definition for right ventricular failure in cardiac surgery patients.

Authors:  Habib Jabagi; Alex Nantsios; Marc Ruel; Lisa M Mielniczuk; André Y Denault; Louise Y Sun
Journal:  ESC Heart Fail       Date:  2022-03-09
  4 in total

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