Journal Article FZJ-2014-01949

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Multiscale modeling of blood flow: from single cells to blood rheology

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2014
Springer Berlin

Biomechanics and modeling in mechanobiology 13(2), 239-258 () [10.1007/s10237-013-0497-9]

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Abstract: Mesoscale simulations of blood flow, where the red blood cells are described as deformable closed shells with a membrane characterized by bending rigidity and stretching elasticity, have made much progress in recent years to predict the flow behavior of blood cells and other components in various flows. To numerically investigate blood flow and blood-related processes in complex geometries, a highly efficient simulation technique for the plasma and solutes is essential. In this review, we focus on the behavior of single and several cells in shear and microcapillary flows, the shear-thinning behavior of blood and its relation to the blood cell structure and interactions, margination of white blood cells and platelets, and modeling hematologic diseases and disorders. Comparisons of the simulation predictions with existing experimental results are made whenever possible, and generally very satisfactory agreement is obtained

Classification:

Contributing Institute(s):
  1. Theorie der Weichen Materie und Biophysik (IAS-2)
  2. Theorie der Weichen Materie und Biophysik (ICS-2)
Research Program(s):
  1. 451 - Soft Matter Composites (POF2-451) (POF2-451)

Appears in the scientific report 2014
Database coverage:
Medline ; BIOSIS Previews ; JCR ; NCBI Molecular Biology Database ; SCOPUS ; Science Citation Index Expanded ; Thomson Reuters Master Journal List ; Web of Science Core Collection
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Institute Collections > IAS > IAS-2
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ICS > ICS-2
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 Record created 2014-04-07, last modified 2024-06-10


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