| Автор(ы): | Shvab I.V., Nimaev V.V. |
| Заглавие: | Mathematical modeling of microcirculatory processes |
| Библ. ссылка: | Shvab I.V., Nimaev V.V. Mathematical modeling of microcirculatory processes // Proceedings of 2017 International Multi-Conference on Engineering, Computer and Information Sciences (SIBIRCON): Novosibirsk, 18-22 Sep 2017. - 2017. - P.531-533 . |
| Внешние системы: | РИНЦ: 34872627; WoS: 000426816500122; DOI: 10.1109/SIBIRCON.2017.8109946; SCOPUS: 2-s2.0-85040525963; |
| Доп. информация: | eng: Metabolic processes are in a constant redistribution of substances between the blood capillary, interstitium and lymphatic capillaries, it is important to build complex models that take into account the interconnection of processes occurring all parts of the microvasculature. The paper presents one approach to construction of mathematical models of metabolic processes occurring in microcirculation level and includes the following interrelated processes: the flow of blood in capillaries and transcapillary exchange, the movement of fluid in the interstices, the exchange of substances between the interstitial fluid and tissue cells, drainage into the lymphatic capillaries. The study of microcirculation allows you to better understand the complex interlinked processes of metabolism in the body, identify the causes of pathologies and suggest possible treatment interstitium. © 2017 IEEE. |
| Ключевые слова: | Lymphatic drainage; Mathematical modeling; Microcirculation; Blood; Blood vessels; Capillarity; Drainage; Mathematical models; Metabolism; Blood capillary; Complex model; Interstitial fluids; Interstitium; Metabolic process; Micro-vasculature; Tissue cells; Transcapillary exchange; Microcirculation; |
| Год издания: | 2017 |
| Страницы или номер статьи: | с.531-533 |
| Конференция: | Название: 2017 International Multi-Conference on Engineering, Computer and Information Sciences Аббревиатура: SIBIRCON Город: Novosibirsk Страна: Russia Даты проведения: 2017-09-18 - 2017-09-22 |
| Цитирование: | 1. A.E. Krogh, E.M. Landis, A.H. Turner The movement of fluid through the human capillary wall in relation to venous pressure and to the colloid osmotic pressure of the blood, J Clin Invest., V. 1 1, 1932, pp.63-95. 2. A. Kucaba-Pietal, Blood Flow Modelling and Diagnostics: Advanced Course and Workshop,Warsaw, Lecture notes, Warsaw, 2005. pp. 9-30. 3. M.A.Swartz, P.A. Netti Mechanics of interstitial-lymphatic fluid transport: theoretical foundation and experimental validation, Journal of Biomechanics,1999, pp . 1297-1307. 4. N.S. Shabrykina, Y.I. Nyashin, M.Y. Nyashin, Biomechanical Models of Microcirculation and Extravascular Fluid Exchange, Proceedings of the Euro Summer School on Biorheology, Sofia: Demetra Ltd, 2004,pp. 62-68. |


