Literature DB >> 23392790

Relationship of right- to left-sided ventricular filling pressures in advanced heart failure: insights from the ESCAPE trial.

Mark H Drazner1, Mariella Velez-Martinez, Colby R Ayers, Sharon C Reimold, Jennifer T Thibodeau, Joseph D Mishkin, Pradeep P A Mammen, David W Markham, Chetan B Patel.   

Abstract

BACKGROUND: Although right atrial pressure (RAP) and pulmonary capillary wedge pressure (PCWP) are correlated in heart failure, in a sizeable minority of patients, the RAP and PCWP are not tightly coupled. The basis of this variability in the RAP/PCWP ratio, and whether it conveys prognostic value, is not known. METHODS AND
RESULTS: We analyzed the Evaluation Study of Congestive Heart Failure and Pulmonary Artery Catheterization Effectiveness (ESCAPE) trial database. Baseline characteristics, including echocardiographic assessment of right ventricular (RV) structure and function, and invasively measured hemodynamic parameters, were compared among tertiles of the RAP/PCWP ratio. Multivariable Cox proportional hazard models assessed the association of RAP/PCWP ratio with the primary ESCAPE outcome (6-month death or hospitalization [days]) adjusting for systolic blood pressure, blood urea nitrogen, 6-minute walk distance, and PCWP. The RAP/PCWP tertiles were 0.27 to 0.4 (tertile 1); 0.41 to 0.615 (tertile 2), and 0.62 to 1.21 (tertile 3). Increasing RAP/PCWP was associated with increasing median right atrial area (23, 26, 29 cm2, respectively; P<0.005), RV area in diastole (21, 27, 27 cm2, respectively; P<0.005), and pulmonary vascular resistance (2.4, 2.9, 3.6 woods units, respectively; P=0.003), and lower RV stroke work index (8.6, 8.4, 5.5 g·m/m2 per beat, respectively; P<0.001). RAP/PCWP ratio was associated with death or hospitalization within 6 months (hazard ratio, 1.16 [1, 1.4]; P<0.05).
CONCLUSIONS: Increased RAP/PCWP ratio was associated with higher pulmonary vascular resistance, reduced RV function (manifest as a larger right atrium and ventricle and lower RV stroke work index), and an increased risk of adverse outcomes in patients with advanced heart failure.

Entities:  

Mesh:

Year:  2013        PMID: 23392790     DOI: 10.1161/CIRCHEARTFAILURE.112.000204

Source DB:  PubMed          Journal:  Circ Heart Fail        ISSN: 1941-3289            Impact factor:   8.790


  31 in total

1.  Treatment Approaches to Congestion Relief in Acute Decompensated HF: Insights After DOSE-AHF and CARRESS-HF.

Authors:  Simon F Shakar; JoAnn Lindenfeld
Journal:  Curr Treat Options Cardiovasc Med       Date:  2014-08

2.  A novel technique to predict pulmonary capillary wedge pressure utilizing central venous pressure and tissue Doppler tricuspid/mitral annular velocities.

Authors:  Kazunori Uemura; Masashi Inagaki; Can Zheng; Meihua Li; Toru Kawada; Masaru Sugimachi
Journal:  Heart Vessels       Date:  2014-05-31       Impact factor: 2.037

3.  First-in-human experience with occlusion of the superior vena cava to reduce cardiac filling pressures in congestive heart failure.

Authors:  Navin K Kapur; Richard H Karas; Sarah Newman; Lena Jorde; Tina Chabrashvili; Shiva Annamalai; Michele Esposito; Carey D Kimmelstiel; Tim Lenihan; Daniel Burkhoff
Journal:  Catheter Cardiovasc Interv       Date:  2019-05-21       Impact factor: 2.692

4.  Discordance Between Clinical Assessment and Invasive Hemodynamics in Patients With Advanced Heart Failure.

Authors:  Nikhil Narang; Ben Chung; Ann Nguyen; Rohan J Kalathiya; Luke J Laffin; Luise Holzhauser; Imo A Ebong; Stephanie A Besser; Teruhiko Imamura; Bryan A Smith; Sara Kalantari; Jayant Raikhelkar; Nitasha Sarswat; Gene H Kim; Valluvan Jeevanandam; Daniel Burkhoff; Gabriel Sayer; Nir Uriel
Journal:  J Card Fail       Date:  2019-08-21       Impact factor: 5.712

5.  Longitudinal Trajectories of Hemodynamics Following Left Ventricular Assist Device Implantation.

Authors:  Takeo Fujino; Aline Sayer; Daisuke Nitta; Teruhiko Imamura; Nikhil Narang; Ann Nguyen; Daniel Rodgers; Jayant Raikhelkar; Bryan Smith; Gene Kim; Colleen LaBuhn; Valluvan Jeevanandam; Daniel Burkhoff; Gabriel Sayer; Nir Uriel
Journal:  J Card Fail       Date:  2020-02-03       Impact factor: 5.712

6.  WIPI1 is a conserved mediator of right ventricular failure.

Authors:  Christos Tzimas; Christoph D Rau; Petra E Buergisser; Gaston Jean-Louis; Katherine Lee; Jeffrey Chukwuneke; Wen Dun; Yibin Wang; Emily J Tsai
Journal:  JCI Insight       Date:  2019-04-25

7.  Portal congestion and intestinal edema in hospitalized patients with heart failure.

Authors:  Yuki Ikeda; Shunsuke Ishii; Mayu Yazaki; Teppei Fujita; Yuichiro Iida; Toyoji Kaida; Takeru Nabeta; Eiji Nakatani; Emi Maekawa; Tomoyoshi Yanagisawa; Toshimi Koitabashi; Takayuki Inomata; Junya Ako
Journal:  Heart Vessels       Date:  2018-01-11       Impact factor: 2.037

Review 8.  CardioMEMS, the real progress in heart failure home monitoring.

Authors:  Edoardo Gronda; Emilio Vanoli; Alessandro Zorzi; Domenico Corrado
Journal:  Heart Fail Rev       Date:  2020-01       Impact factor: 4.214

9.  A disproportionate elevation in right ventricular filling pressure, in relation to left ventricular filling pressure, is associated with renal impairment and increased mortality in advanced decompensated heart failure.

Authors:  Justin L Grodin; Mark H Drazner; Matthias Dupont; Wilfried Mullens; David O Taylor; Randall C Starling; W H Wilson Tang
Journal:  Am Heart J       Date:  2015-02-28       Impact factor: 4.749

10.  Clinical profile and prognostic value of anemia at the time of admission and discharge among patients hospitalized for heart failure with reduced ejection fraction: findings from the EVEREST trial.

Authors:  Robert J Mentz; Stephen J Greene; Andrew P Ambrosy; Muthiah Vaduganathan; Haris P Subacius; Karl Swedberg; Aldo P Maggioni; Savina Nodari; Piotr Ponikowski; Stefan D Anker; Javed Butler; Mihai Gheorghiade
Journal:  Circ Heart Fail       Date:  2014-04-15       Impact factor: 8.790

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