A Constitutive Description of Contracting Papillary Muscle and Its Implications to the Dynamics of the Intact Heart

Author:

Pinto J. G.1

Affiliation:

1. Biodynamics Laboratory, Department of Mechanical Engineering, San Diego State University, San Diego, Calif. 92182-0191

Abstract

A simple mathematical model capable of simulating the major biomechanical attributes of contracting cardiac muscle is presented. This model is based on the phenomenological observations on heart muscle. The form of the equation can be readily extended to describe the pressure-volume-time-velocity of the intact heart as well, thus allowing a direct bridge between the dynamics of papillary muscle and the dynamics of intact heart. Parameters that are sensitive to inotropic state of the muscle can be obtained directly from the isometric tension-time record of the muscle or the isovolumic pressure-time record of the ventricle. These parameters have the potential to serve as quantitative measures of cardiac health.

Publisher

ASME International

Subject

Physiology (medical),Biomedical Engineering

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1. A simple phenomenological approach for myocardial contraction: formulation, parameter sensitivity study and applications in organ level simulations;Mechanics of Soft Materials;2021-02-27

2. Image-Based Predictive Modeling of Heart Mechanics;Annual Review of Biomedical Engineering;2015-12-07

3. Computational Modeling of Ventricular Mechanics and Energetics;Applied Mechanics Reviews;2005-03-01

4. A model of cardiac cellular electromechanics;Philosophical Transactions of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences;2001-06-15

5. Controlled Auxotonic Twitch in Papillary Muscle: A New Computer-Based Control Approach;Computers and Biomedical Research;2000-12

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