Simulations of the red blood cells (RBCs) flow as a movement of elastic objects in a fluid, are developed to optimize microfluidic devices used for a blood sample analysis for diagnostic purposes in the medicine. Tracking cell behaviour during simulation helps to improve the model and adjust its parameters. For the optimization of the microfluidic devices, it is also necessary to analyse cell trajectories as well as likelihood and frequency of their occurrence in a particular device area, especially in the parts, where they can affect circulating tumour cells capture. In this article, we propose and verify several ways of processing and analysing the typology and trajectory stability in simulations with single or with a large number of red ...
A combination of mesoscale hydrodynamic simulations and microfluidic experiments are used to explore...
The computer simulations are pervasively used to improve the knowledge about biophysical phenomena a...
Red blood cell biomechanics can provide us with a deeper understanding of macroscopic physiology and...
Simulations of the red blood cells (RBCs) flow as a movement of elastic objects in a fluid, are deve...
In this article we propose statistical method for comparison of simulation and real biological exper...
<p>These data represent the simulated trajectories of red blood cell (RBC) through different microva...
The flow dynamics of red blood cells in vivo in blood capillaries and in vitro in microfluidic chann...
Microfluidics are routinely used to study cellular properties, including the efficient quantificatio...
International audienceThe lateral migration of red blood cells (RBCs) in confined channel flows is a...
In this work, a microfluidics system to investigate the flow behaviour of red blood cells (RBCs) in ...
Microvascular transport is strongly influenced by the nonuniform partitioning of red blood cells at ...
Studies on the haemodynamics of human circulation are clinically and scientifically important. In or...
Cardiovascular diseases, commonly referred as Heart Diseases, involve heart and blood vessels associ...
A computational study and a machine learning approach are used for the numerical simulation of healt...
A computational methodology for the direct numerical simulation of 3D cellular-scale blood flow in a...
A combination of mesoscale hydrodynamic simulations and microfluidic experiments are used to explore...
The computer simulations are pervasively used to improve the knowledge about biophysical phenomena a...
Red blood cell biomechanics can provide us with a deeper understanding of macroscopic physiology and...
Simulations of the red blood cells (RBCs) flow as a movement of elastic objects in a fluid, are deve...
In this article we propose statistical method for comparison of simulation and real biological exper...
<p>These data represent the simulated trajectories of red blood cell (RBC) through different microva...
The flow dynamics of red blood cells in vivo in blood capillaries and in vitro in microfluidic chann...
Microfluidics are routinely used to study cellular properties, including the efficient quantificatio...
International audienceThe lateral migration of red blood cells (RBCs) in confined channel flows is a...
In this work, a microfluidics system to investigate the flow behaviour of red blood cells (RBCs) in ...
Microvascular transport is strongly influenced by the nonuniform partitioning of red blood cells at ...
Studies on the haemodynamics of human circulation are clinically and scientifically important. In or...
Cardiovascular diseases, commonly referred as Heart Diseases, involve heart and blood vessels associ...
A computational study and a machine learning approach are used for the numerical simulation of healt...
A computational methodology for the direct numerical simulation of 3D cellular-scale blood flow in a...
A combination of mesoscale hydrodynamic simulations and microfluidic experiments are used to explore...
The computer simulations are pervasively used to improve the knowledge about biophysical phenomena a...
Red blood cell biomechanics can provide us with a deeper understanding of macroscopic physiology and...