Microvascular networks are not simple straight microchannels but rather complex geometries composed by successive asymmetric divergent and convergent bifurcations. Despite the extensive research work in this field, still lack of knowledge about the blood flow behavior in microvascular networks. The current study applies the most current advanced visualization and microfabrication techniques to provide further insights into to the blood flow in network geometries. Hence, by using a high-speed video microscopy system, blood flow measurements and visualizations of the cell-free layer (CFL) were performed along a microchannel network composed by several divergent and convergent bifurcations. The inlet flow rate was kept constant whereas the hem...
In the present work, in vitro blood flowing through bifurcating microchannels was studied, with the ...
Bifurcating networks are commonly found in nature. One example is the microvascular system, composed...
International audienceMicrovasculatures-on-a-chip, i.e. in vitro models that mimic important feature...
In the past years, in vitro blood studies have revealed several significant hemodynamic phenomena th...
One of the most interesting hemodynamic phenomenon observed in microchannels is the existence of a m...
In microcirculation, the cell-free layer (CFL) is a well-known physiological phenomenon that plays a...
Blood exhibits unique flow characteristics on micro-scale level, due to the complex biochemical stru...
A few detailed studies have been performed in complex in vitro microvascular networks composed by bi...
A few detailed studies have been performed in complex in vitro microvascular networks composed by bi...
In this chapter we discuss the cell-free layer (CFL) developed adjacent to the wall of microgeometri...
Bifurcations and branches in the microcirculation dramatically affect blood flow as they determine t...
This paper aims to investigate the effect of both diverging and converging bifurcations on the flow ...
Blood is an opaque, heterogeneous, non-Newtonian fluid composed by a yellowish homogeneous fluid – t...
Blood is a complex body fluid, composed of cells and plasma, which holds a massive amount of informa...
Micro-visualization techniques have been used to investigate the in vitro blood flow through straigh...
In the present work, in vitro blood flowing through bifurcating microchannels was studied, with the ...
Bifurcating networks are commonly found in nature. One example is the microvascular system, composed...
International audienceMicrovasculatures-on-a-chip, i.e. in vitro models that mimic important feature...
In the past years, in vitro blood studies have revealed several significant hemodynamic phenomena th...
One of the most interesting hemodynamic phenomenon observed in microchannels is the existence of a m...
In microcirculation, the cell-free layer (CFL) is a well-known physiological phenomenon that plays a...
Blood exhibits unique flow characteristics on micro-scale level, due to the complex biochemical stru...
A few detailed studies have been performed in complex in vitro microvascular networks composed by bi...
A few detailed studies have been performed in complex in vitro microvascular networks composed by bi...
In this chapter we discuss the cell-free layer (CFL) developed adjacent to the wall of microgeometri...
Bifurcations and branches in the microcirculation dramatically affect blood flow as they determine t...
This paper aims to investigate the effect of both diverging and converging bifurcations on the flow ...
Blood is an opaque, heterogeneous, non-Newtonian fluid composed by a yellowish homogeneous fluid – t...
Blood is a complex body fluid, composed of cells and plasma, which holds a massive amount of informa...
Micro-visualization techniques have been used to investigate the in vitro blood flow through straigh...
In the present work, in vitro blood flowing through bifurcating microchannels was studied, with the ...
Bifurcating networks are commonly found in nature. One example is the microvascular system, composed...
International audienceMicrovasculatures-on-a-chip, i.e. in vitro models that mimic important feature...