Bulletin of the American Physical Society
APS March Meeting 2021
Volume 66, Number 1
Monday–Friday, March 15–19, 2021; Virtual; Time Zone: Central Daylight Time, USA
Session A06: Colloids and Granular Materials
8:00 AM–11:00 AM,
Monday, March 15, 2021
Room: 06
Sponsoring
Unit:
DSOFT
Chair: Luis Pugnaloni
Abstract: A06.00006 : Physical mechanism of erythrocytes sedimentation rate
9:00 AM–9:12 AM
Live
Presenter:
Alexis Darras
(Univ des Saarlandes)
Authors:
Alexis Darras
(Univ des Saarlandes)
Anil Kumar Dasanna
(Forschungszentrum Jülich)
Semen Buvalyyy
(Forschungszentrum Jülich)
Thomas John
(Univ des Saarlandes)
Christian Wagner
(Univ des Saarlandes)
Dmitry A. Fedosov
(Forschungszentrum Jülich)
Lars Kaestner
(Univ des Saarlandes)
Until now, researchers thought that the increase of fibrinogen accelerates the ESR by creating bigger aggregates of red blood cells (RBC). Fibrinogen is indeed an aggregation agent of RBCs, and bigger aggregates tend to sediment faster in Stokes regime. However, modeling the ESR measurements with this hypothesis is challenging and often requires physical assumptions specific to this system.
Besides, modern colloidal science has shown that attractive particles form percolating aggregates, as wide as the container. The sedimentation of those colloids then follows a so-called "colloidal gel collapse" regime. Here, we show that RBCs actually follow the same behavior. We present detailed measurements of experimental ESR curves, and original micro- and mesoscopic pictures supporting this claim. Besides, those experimental observations are supported by 2D and 3D numerical simulations. We also demonstrate that such assumption naturally leads to efficient analytical modeling for the sedimentation curve of RBC.
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