HYDRODYNAMIC FUNDAMENTALS FOR PHYSICAL-MATHEMATICAL MODEL OF MYOCARDIUM CIRCULATION
Currently the diseases of heart and vessels are the primary cause of disability and mortality. Recent understanding of myocardial angioarchitectonics does not reveal fully the relation of coronary anatomy with their function related to their aim for sufficient blood supply in coronary system at tiss...
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Format: | Article |
Language: | Russian |
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«FIRMA «SILICEA» LLC
2016-08-01
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Series: | Российский кардиологический журнал |
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Online Access: | https://russjcardiol.elpub.ru/jour/article/view/553 |
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author | V. E. Milyukov T. S. Zharikova |
author_facet | V. E. Milyukov T. S. Zharikova |
author_sort | V. E. Milyukov |
collection | DOAJ |
description | Currently the diseases of heart and vessels are the primary cause of disability and mortality. Recent understanding of myocardial angioarchitectonics does not reveal fully the relation of coronary anatomy with their function related to their aim for sufficient blood supply in coronary system at tissue level. Filtration liquid currents in non-homogenic porous mediums are widely spread in nature and technology and highly attractable for researches. Also, there is broadly discussed filtration in multilayered non-homogenic grounds. Myocard and its vessels can be represented as the model of porous medium, towards which the hydrodynamic laws can be applied, that are in use for liquid perfusion assessement in porous mediums perfusion. This has never been applied to circulation of a human organs and tissues. The direction is presented for collaboration of physicians and physicshydrodynamicians to obtain results for better assessment of vascular organization net and hydrodynamical circumstances of the heart circulation, which might further lead to universalized criteria for reference ranges definition and myocardium perfusion levels of disorder; to objectify pathogenetic approaches to cardiovascular patients treatment. |
first_indexed | 2024-04-09T20:48:55Z |
format | Article |
id | doaj.art-7ec3ac5b338941259a5ae4d158da1536 |
institution | Directory Open Access Journal |
issn | 1560-4071 2618-7620 |
language | Russian |
last_indexed | 2024-04-09T20:48:55Z |
publishDate | 2016-08-01 |
publisher | «FIRMA «SILICEA» LLC |
record_format | Article |
series | Российский кардиологический журнал |
spelling | doaj.art-7ec3ac5b338941259a5ae4d158da15362023-03-29T21:23:26Zrus«FIRMA «SILICEA» LLCРоссийский кардиологический журнал1560-40712618-76202016-08-0108929510.15829/1560-4071-2016-8-92-95665HYDRODYNAMIC FUNDAMENTALS FOR PHYSICAL-MATHEMATICAL MODEL OF MYOCARDIUM CIRCULATIONV. E. Milyukov0T. S. Zharikova1I. M. Sechenov First Moscow State Medical University of the Ministry of Health; P. V. Mandryka Institute of Physicians Improvement of MESCCI. M. Sechenov First Moscow State Medical University of the Ministry of HealthCurrently the diseases of heart and vessels are the primary cause of disability and mortality. Recent understanding of myocardial angioarchitectonics does not reveal fully the relation of coronary anatomy with their function related to their aim for sufficient blood supply in coronary system at tissue level. Filtration liquid currents in non-homogenic porous mediums are widely spread in nature and technology and highly attractable for researches. Also, there is broadly discussed filtration in multilayered non-homogenic grounds. Myocard and its vessels can be represented as the model of porous medium, towards which the hydrodynamic laws can be applied, that are in use for liquid perfusion assessement in porous mediums perfusion. This has never been applied to circulation of a human organs and tissues. The direction is presented for collaboration of physicians and physicshydrodynamicians to obtain results for better assessment of vascular organization net and hydrodynamical circumstances of the heart circulation, which might further lead to universalized criteria for reference ranges definition and myocardium perfusion levels of disorder; to objectify pathogenetic approaches to cardiovascular patients treatment.https://russjcardiol.elpub.ru/jour/article/view/553myocardiumcoronary vesselscapillarieshydrodynamicsfiltrationnon-homogenic porous medium |
spellingShingle | V. E. Milyukov T. S. Zharikova HYDRODYNAMIC FUNDAMENTALS FOR PHYSICAL-MATHEMATICAL MODEL OF MYOCARDIUM CIRCULATION Российский кардиологический журнал myocardium coronary vessels capillaries hydrodynamics filtration non-homogenic porous medium |
title | HYDRODYNAMIC FUNDAMENTALS FOR PHYSICAL-MATHEMATICAL MODEL OF MYOCARDIUM CIRCULATION |
title_full | HYDRODYNAMIC FUNDAMENTALS FOR PHYSICAL-MATHEMATICAL MODEL OF MYOCARDIUM CIRCULATION |
title_fullStr | HYDRODYNAMIC FUNDAMENTALS FOR PHYSICAL-MATHEMATICAL MODEL OF MYOCARDIUM CIRCULATION |
title_full_unstemmed | HYDRODYNAMIC FUNDAMENTALS FOR PHYSICAL-MATHEMATICAL MODEL OF MYOCARDIUM CIRCULATION |
title_short | HYDRODYNAMIC FUNDAMENTALS FOR PHYSICAL-MATHEMATICAL MODEL OF MYOCARDIUM CIRCULATION |
title_sort | hydrodynamic fundamentals for physical mathematical model of myocardium circulation |
topic | myocardium coronary vessels capillaries hydrodynamics filtration non-homogenic porous medium |
url | https://russjcardiol.elpub.ru/jour/article/view/553 |
work_keys_str_mv | AT vemilyukov hydrodynamicfundamentalsforphysicalmathematicalmodelofmyocardiumcirculation AT tszharikova hydrodynamicfundamentalsforphysicalmathematicalmodelofmyocardiumcirculation |