Literature DB >> 3981986

Interaction between intramyocardial pressure (IMP) and myocardial circulation.

T Arts, R S Reneman.   

Abstract

In our concept of the interaction between intramyocardial pressure (IMP) and myocardial perfusion, IMP is defined as the hydrostatic pressure in the soft tissue surrounding the myocardial fibers. In a mathematical model of the mechanics of the left ventricle the latter definition results in values for IMP equal to left ventricular pressure in the inner layers of the wall, and a continuous decrease across the wall to zero in the outer layers. Modulation of coronary artery flow during the cardiac cycle is predominantly due to compression of the coronary vasculature by the IMP during the systolic phase of the cardiac cycle, resulting in back-squeezing components of this flow. In a mathematical model of the dynamics of the coronary circulation, containing a large capacitance at the level of the coronary microvasculature, the modulations of coronary artery flow were found to be similar to those found in animal experiments in open-chest dogs.

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Year:  1985        PMID: 3981986     DOI: 10.1115/1.3138520

Source DB:  PubMed          Journal:  J Biomech Eng        ISSN: 0148-0731            Impact factor:   2.097


  11 in total

Review 1.  Theoretical models for coronary vascular biomechanics: progress & challenges.

Authors:  Sarah L Waters; Jordi Alastruey; Daniel A Beard; Peter H M Bovendeerd; Peter F Davies; Girija Jayaraman; Oliver E Jensen; Jack Lee; Kim H Parker; Aleksander S Popel; Timothy W Secomb; Maria Siebes; Spencer J Sherwin; Rebecca J Shipley; Nicolas P Smith; Frans N van de Vosse
Journal:  Prog Biophys Mol Biol       Date:  2010-10-30       Impact factor: 3.667

Review 2.  Physiological hypotheses--intramyocardial pressure. A new concept, suggestions for measurement.

Authors:  N Westerhof
Journal:  Basic Res Cardiol       Date:  1990 Mar-Apr       Impact factor: 17.165

Review 3.  Regulation of Coronary Blood Flow.

Authors:  Adam G Goodwill; Gregory M Dick; Alexander M Kiel; Johnathan D Tune
Journal:  Compr Physiol       Date:  2017-03-16       Impact factor: 9.090

4.  Development of an In Vitro Model to Characterize the Effects of Transcatheter Aortic Valve on Coronary Artery Flow.

Authors:  Joseph Calderan; Wenbin Mao; Eric Sirois; Wei Sun
Journal:  Artif Organs       Date:  2015-10-29       Impact factor: 3.094

5.  Dependence of intramyocardial pressure and coronary flow on ventricular loading and contractility: a model study.

Authors:  Peter H M Bovendeerd; Petra Borsje; Theo Arts; Frans N van De Vosse
Journal:  Ann Biomed Eng       Date:  2006-10-18       Impact factor: 3.934

6.  Model of the coronary circulation based on pressure dependence of coronary resistance and compliance.

Authors:  P Bruinsma; T Arts; J Dankelman; J A Spaan
Journal:  Basic Res Cardiol       Date:  1988 Sep-Oct       Impact factor: 17.165

7.  Effects of myocardial contraction on coronary blood flow: an integrated model.

Authors:  D Zinemanas; R Beyar; S Sideman
Journal:  Ann Biomed Eng       Date:  1994 Nov-Dec       Impact factor: 3.934

Review 8.  Heterogeneity of myocardial blood flow.

Authors:  J I Hoffman
Journal:  Basic Res Cardiol       Date:  1995 Mar-Apr       Impact factor: 17.165

9.  Effects of myocardial function and systemic circulation on regional coronary perfusion.

Authors:  Ravi Namani; Lik C Lee; Yoram Lanir; Benjamin Kaimovitz; Sheikh M Shavik; Ghassan S Kassab
Journal:  J Appl Physiol (1985)       Date:  2020-02-20

Review 10.  Overview of mathematical modeling of myocardial blood flow regulation.

Authors:  Ravi Namani; Yoram Lanir; Lik Chuan Lee; Ghassan S Kassab
Journal:  Am J Physiol Heart Circ Physiol       Date:  2020-03-06       Impact factor: 4.733

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