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Flowing blood displays a phenomenon called margination, in which leukocytes and platelets are preferentially found near blood vessel walls, while erythrocytes are depleted from these regions. Here margination is investigated using direct…

软凝聚态物质 · 物理学 2012-09-05 Amit Kumar , Michael D. Graham

Margination, a fundamental process in which leukocytes migrate from the flowing blood to the vessel wall, is well-documented in physiology. However, it is still an open question on how the differences in cell size and stiffness of white and…

软凝聚态物质 · 物理学 2024-09-05 Revaz D. Chachanidze , Othmane Aouane , Jens Harting , Christian Wagner , Marc Leonetti

The impact of cell segregation and margination in blood disorders on microcirculatory hemodynamics within bifurcated vessels are physiologically significant, yet poorly understood. This study presents a comprehensive computational…

生物物理 · 物理学 2025-01-09 Xiaopo Cheng , Christina Caruso , Wilbur A. Lam , Michael D. Graham

Blood exhibits a heterogeneous nature of hematocrit, velocity, and effective viscosity in microcapillaries. Microvascular bifurcations have a significant influence on the distribution of the blood cells and blood flow behavior. This paper…

生物物理 · 物理学 2016-02-24 Tong Wang , Uwitije Rongin , Zhongwen Xing

The multi-cellular hydrodynamic interactions play a critical role in the phenomenology of blood flow in the microcirculation. A fast algorithm has been developed to simulate large numbers of cells modeled as elastic thin membranes. For red…

流体动力学 · 物理学 2008-10-14 Amir H. G. Isfahani , Hong Zhao , Jonathan B. Freund

A mechanistic theory is developed to describe segregation in confined multicomponent suspensions such as blood. It incorporates the two key phenomena arising in these systems at low Reynolds number: hydrodynamic pair collisions and…

软凝聚态物质 · 物理学 2015-05-05 R. G. Henríquez Rivera , K. Sinha , M. D. Graham

The study of vesicles in suspension is important to understand the complicated dynamics exhibited by cells in vivo and in vitro. We developed a computer simulation based on the boundary-integral method to model the three dimensional…

生物物理 · 物理学 2013-07-24 Ivan Rey Suarez , Chad Leidy , Gabriel Tellez , Guillaume Gay , Andres Gonzalez-Mancera

Red blood cells (RBCs) are an essential component of blood. A method to include the particulate nature of blood is introduced here with the goal of studying circulation in large-scale realistic vessels. The method uses a combination of the…

医学物理 · 物理学 2011-07-26 Simone Melchionna

In this work we prove occurrence of a super-critical Hopf bifurcation in a model of white blood cell formation structured by three maturation stages. We provide an explicit analytical expression for the bifurcation point depending on model…

动力系统 · 数学 2019-10-24 Franziska Knauer , Thomas Stiehl , Anna Marciniak-Czochra

Computational Fluid Dynamics (CFD) is currently used to design and improve the hydraulic properties of biomedical devices, wherein the large scale blood circulation needs to be simulated by accounting for the mechanical response of red…

流体动力学 · 物理学 2024-12-24 F. Guglietta , M. Behr , L. Biferale , G. Falcucci , M. Sbragaglia

Partitioning of red blood cells (RBCs) at the level of bifurcations in the microcirculatory system affects many physiological functions yet it remains poorly understood. We address this problem by using T-shaped microfluidic bifurcations as…

The deformability of human red blood cells (RBCs), which comprise almost 99% of the cells in whole blood, is largely related not only to pathophysiological blood flow but also to the levels of intracellular compounds. Therefore, statistical…

流体动力学 · 物理学 2024-10-08 Naoki Takeishi , Tomohiro Nishiyama , Kodai Nagaishi , Takeshi Nashima , Masako Sugihara-Seki

Motivated by the complex rheological behaviors observed in small/micro scale blood vessels, such as the Fahraeus effect, plasma-skimming, shear-thinning, etc., we develop a non-linear suspension model for blood. The viscosity is assumed to…

流体动力学 · 物理学 2018-12-26 Wei-Tao Wu , Nadine Aubry , James F. Antaki , Mehrdad Massoudi

The nature of blood as a suspension of red blood cells makes computational hemodynamics a demanding task. Our coarse-grained blood model, which builds on a lattice Boltzmann method for soft particle suspensions, enables the study of the…

软凝聚态物质 · 物理学 2011-09-16 Florian Janoschek , Francesca Mancini , Jens Harting , Federico Toschi

We present a numerical analysis of the rheology of a suspension of red blood cells (RBCs) in a wall-bounded shear flow. The flow is assumed as almost inertialess. The suspension of RBCs, modeled as biconcave capsules whose membrane follows…

流体动力学 · 物理学 2019-07-24 Naoki Takeishi , Marco E. Rosti , Yohsuke Imai , Shigeo Wada , Luca Brandt

Blood rheology and microcirculation are strongly influenced by red blood cell aggregation. We investigate the dissociation rates of red cell aggregates in extensional flow using hyperbolic microfluidic constrictions and image analysis by a…

生物物理 · 物理学 2024-07-30 Midhun Puthumana Melepattu , Guillaume Maitrejean , Thomas Podgorski

We show, via three-dimensional immersed-boundary-finite-element-lattice-Boltzmann simulations, that deformability-based red blood cell (RBC) separation in deterministic lateral displacement (DLD) devices is possible. This is due to the…

软凝聚态物质 · 物理学 2016-03-15 Timm Krüger , David Holmes , Peter V. Coveney

Hematopoiesis is a complex biological process that leads to the production and regulation of blood cells. It is based upon differentiation of stem cells under the action of growth factors. A mathematical approach of this process is proposed…

经典分析与常微分方程 · 数学 2009-04-17 Mostafa Adimy , Fabien Crauste , Shigui Ruan

Evaporative lithography in cells of arbitrary configuration allows for the creation of diverse particle deposition patterns due to the formation of a specific flow structure in the liquid caused by non-uniform evaporation. The latter in…

软凝聚态物质 · 物理学 2025-12-09 Konstantin S. Kolegov , Viktor M. Fliagin , Natalia A. Ivanova

The fluid dynamics video presented here outlines recent advances in the simulation of multiphase cellular blood flow through the direct numerical simulations of deformable red blood cells (RBCs) demonstrated through several numerical…

流体动力学 · 物理学 2010-10-18 Daniel A. Reasor , Jonathan R. Clausen , Brian M. Yun , Cyrus K. Aidun
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