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JOURNALS // Prikladnaya Mekhanika i Tekhnicheskaya Fizika // Archive

Prikl. Mekh. Tekh. Fiz., 2021 Volume 62, Issue 3, Pages 105–117 (Mi pmtf173)

This article is cited in 7 papers

Numerical simulation inflammatory phase of myocardial infarction

O. F. Voropaevaa, Ch. A. Tsgoevab, Yu. I. Shokina

a Federal Research Center for Information and Computational Technologies, 630090, Novosibirsk, Russia
b Novosibirsk National Research State University, 630090, Novosibirsk, Russia

Abstract: The dynamics of death of cardiac muscle cells during the acute phase of myocardial infarction has been studied numerically. The problem is considered in the local and spatially distributed formulations. The adequacy of the mathematical model is confirmed by the quantitatively agreement between the results of numerical solution of the problem and experimental data. The adopted models were used to investigate the trigger mechanism of transition from a favorable scenario for the development of an acute myocardial infarction to a scenario characterized by a rapid increase in the level of myocardial damage on the third – fifth day of myocardial infarction. For these scenarios of the development of a myocardial infarction, the process of demarcation inflammation has been investigated. It has been shown that the results of studies, including evaluations of the effectiveness of cytokine anti-inflammatory therapeutic strategies are consistent with available data of laboratory studies.

Keywords: mathematical model, myocardial infarction, demarcation inflammation, trigger mechanism, Cauchy problem, reactions–diffusion equations, fractional step method.

UDC: 519.6; 51-76

Received: 15.03.2021
Revised: 15.03.2021
Accepted: 29.03.2021

DOI: 10.15372/PMTF20210310


 English version:
Journal of Applied Mechanics and Technical Physics, 2021, 62:3, 441–450

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© Steklov Math. Inst. of RAS, 2024