Literature DB >> 9390949

Coupled vs. uncoupled pericardial constraint: effects on cardiac chamber interactions.

M Takata1, Y Harasawa, S Beloucif, J L Robotham.   

Abstract

The effects of pericardial constraint on cardiac chamber interactions were evaluated by mathematical model analyses based on a novel concept of coupled vs. uncoupled pericardial constraint. We hypothesized that the nature of pericardial constraint can be classified as a "coupled" constraint exerted by uniform liquid pressure or an "uncoupled" constraint exerted by regional surface pressure. The numerical solution of the model of atrioventricular interaction produced the characteristic waveforms in venous flows and right atrial/ventricular pressures in classical pericardial diseases. Coupled constraint accounted for the patterns in cardiac tamponade; uncoupled constraint accounted for those in constrictive pericarditis. Analytic solution of the model of ventricular interdependence demonstrated that coupled constraint (tamponade) produced greater gains in ventricular interdependence, increasing the occurrence of pulsus paradoxus, whereas uncoupled constraint (constriction) produced a greater effective right ventricular elastance, increasing the likelihood of Kussmaul's sign. Thus the concept of coupled vs. uncoupled constraint may offer a coherent framework to understand the characteristic steady-state and respiratory-induced hemodynamic events in multiple forms of pericardial diseases.

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Year:  1997        PMID: 9390949     DOI: 10.1152/jappl.1997.83.6.1799

Source DB:  PubMed          Journal:  J Appl Physiol (1985)        ISSN: 0161-7567


  6 in total

1.  Effects of pericardial constraint and ventricular interaction on left ventricular hemodynamics in the unloaded heart.

Authors:  Naoki Fujimoto; Shigeki Shibata; Jeffery L Hastings; Graeme Carrick-Ranson; Paul S Bhella; Dean Palmer; Qi Fu; Benjamin D Levine
Journal:  Am J Physiol Heart Circ Physiol       Date:  2011-03-11       Impact factor: 4.733

2.  Differential Effects of Ventricular Pacing Sites of Contraction Synchrony and Global Cardiac Performance.

Authors:  Mohammed Alhammouri; Hyung Kook Kim; Yasser Mokhtar; Maxime Cannesson; Masaki Tanabe; John Gorcsan; David Schwartzman; Michael R Pinsky
Journal:  Crit Care Shock       Date:  2009-05-01

3.  Acute volume loading exacerbates direct ventricular interaction in a model of COPD.

Authors:  William S Cheyne; Alexandra M Williams; Megan I Harper; Neil D Eves
Journal:  J Appl Physiol (1985)       Date:  2017-07-20

Review 4.  Physiology of pericardial fluid production and drainage.

Authors:  Konstantinos Vogiatzidis; Sotirios G Zarogiannis; Isaac Aidonidis; Evgeniy I Solenov; Paschalis-Adam Molyvdas; Konstantinos I Gourgoulianis; Chrissi Hatzoglou
Journal:  Front Physiol       Date:  2015-03-18       Impact factor: 4.566

5.  Using a human cardiovascular-respiratory model to characterize cardiac tamponade and pulsus paradoxus.

Authors:  Deepa Ramachandran; Chuan Luo; Tony S Ma; John W Clark
Journal:  Theor Biol Med Model       Date:  2009-08-06       Impact factor: 2.432

Review 6.  The right ventricle: interaction with the pulmonary circulation.

Authors:  Michael R Pinsky
Journal:  Crit Care       Date:  2016-09-10       Impact factor: 9.097

  6 in total

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