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Название: Obtaining Vortex Formation in Blood Flow by Particle Tracking: Echo-PV Methods and Computer Simulation
Авторы: Starodumov, I.
Sokolov, S.
Makhaeva, K.
Mikushin, P.
Dinislamova, O.
Blyakhman, F.
Дата публикации: 2023
Издатель: Multidisciplinary Digital Publishing Institute (MDPI)
Библиографическое описание: Starodumov, I, Sokolov, S, Makhaeva, K, Mikushin, P, Dinislamova, O & Blyakhman, F 2023, 'Obtaining Vortex Formation in Blood Flow by Particle Tracking: Echo-PV Methods and Computer Simulation', Inventions, Том. 8, № 5, 124. https://doi.org/10.3390/inventions8050124
Starodumov, I., Sokolov, S., Makhaeva, K., Mikushin, P., Dinislamova, O., & Blyakhman, F. (2023). Obtaining Vortex Formation in Blood Flow by Particle Tracking: Echo-PV Methods and Computer Simulation. Inventions, 8(5), [124]. https://doi.org/10.3390/inventions8050124
Аннотация: Micrometer-sized particles are widely introduced as fluid flow markers in experimental studies of convective flows. The tracks of such particles demonstrate a high contrast in the optical range and well illustrate the direction of fluid flow at local vortices. This study addresses the theoretical justification on the use of large particles for obtaining vortex phenomena and its characterization in stenotic arteries by the Echo Particle Velocimetry method. Calcite particles with an average diameter of 0.15 mm were chosen as a marker of streamlines using a medical ultrasound device. The Euler–Euler model of particle motion was applied to simulate the mechanical behavior of calcite particles and 20 µm aluminum particles. The accuracy of flow measurement at vortex regions was evaluated by computational fluid dynamics methods. The simulation results of vortex zone formation obtained by Azuma and Fukushima (1976) for aluminum particles with the use of the optical velocimetry method and calcite particles were compared. An error in determining the size of the vortex zone behind of stenosis does not exceed 5%. We concluded that the application of large-size particles for the needs of in vitro studies of local hemodynamics is possible. © 2023 by the authors.
Ключевые слова: COMPUTER MODELING
HEMODYNAMICS
PARTICLE VELOCIMETRY
STENOTIC VESSEL
URI: http://elar.urfu.ru/handle/10995/130895
Условия доступа: info:eu-repo/semantics/openAccess
cc-by
Текст лицензии: https://creativecommons.org/licenses/by/4.0/
Идентификатор SCOPUS: 85175085938
Идентификатор WOS: 001089863400001
Идентификатор PURE: 47871229
ISSN: 2411-5134
DOI: 10.3390/inventions8050124
Сведения о поддержке: Russian Science Foundation, RSF: 22-71-10071
This study was supported by the Russian Science Foundation (project No. 22-71-10071).
Карточка проекта РНФ: 22-71-10071
Располагается в коллекциях:Научные публикации ученых УрФУ, проиндексированные в SCOPUS и WoS CC

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