N. Bessonov
Russian Academy of Sciences
34 Papers
136 Citations
N. Bessonov is an academic researcher from Russian Academy of Sciences. The author has contributed to research in topics: Stamping & Population. The author has an hindex of 12, co-authored 34 publications.
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Papers
Methods of blood flow modelling
TL;DR: In this article, a review is devoted to recent developments in blood flow modelling, where blood is considered as a heterogeneous fluid composed of plasma and blood cells, and the main ideas of this approach and some examples of its application are discussed.
Model of mucociliary clearance in cystic fibrosis lungs
P Kurbatova,P Kurbatova,N. Bessonov,Vitaly Volpert,Harm A.W.M. Tiddens,Catherine Cornu,Patrice Nony,Daan Caudri +7 more
TL;DR: A new physiologically based mathematical model of muco-ciliary transport consisting of the two major components of the mucociliary clearance system: (i) periciliary liquid layer (PCL) and (ii) mucus layer is proposed.
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Numerical Modelling of Cell Distribution in Blood Flow
N. Bessonov,Evgenia Babushkina,Sergey Fedorovich Golovashchenko,Alen Tosenberger,Alen Tosenberger,Fazoil I. Ataullakhanov,Mikhail A. Panteleev,A Tokarev,Vitaly Volpert +8 more
TL;DR: A three-dimensional model based on Dissipative Particle Dynamics method and a new hybrid (discrete-continuous) model for blood cells is used to study the interaction of erythrocytes with platelets and leucocytes in flow to find out how properties of blood cells and their interaction determine their distribution in flow.
Mathematics of Darwin’s Diagram
TL;DR: In this paper, the authors introduce a number of new models which take into account local, nonlocal and global consumption of resources, and models with space and time dependent coefficients, and give a mathematical interpretation of this diagram and to show how it can be reproduced in mathematical models.
Cell Modelling of Hematopoiesis
TL;DR: This software can be useful to study some features of normal hematopoiesis as well as some blood diseases such as myelogenous leukemia and it is also possible to simulate cell communication and the formation of cell colonies in the bone marrow.
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