The aim of the work is to find an analytical model of a pneumatic micropump which was integrated into a cell-culture system. This allows the estimation of peak velocities and wall-shear stress influencing the cultured cells in our multi-organ-chip (MOC) with respect to the applied pressure and the geometric properties of the pump. By adjusting those parameters, one can imitate physiological or pathological heart activity. The calculated flow within the MOC was compared to experimental results obtained via the non-invasive micro-PIV method
The human gut microbiota (HGM) is a vast and complex community of microorganisms that inhabits the d...
The human gut microbiota (HGM) is a vast and complex community of microorganisms that inhabits the d...
In the last few years organ-on-chip (OoC) has been emerging as a new method for more reliable resear...
The aim of the work is to find an analytical model of a pneumatic micropump which was integrated int...
This study presents a double-side diaphragm peristaltic pump for efficient medium transport without ...
An investigation into the pumping flow rates and the time-resolved membrane actuation of a microperi...
This paper presents lumped-parameter simulation of dynamic characteristics of peristaltic micropumps...
A pneumatically operated peristaltic micro pump can play an important role in nanoliter or picoliter...
A pneumatically operated peristaltic micro pump can play an important role in nanoliter or picoliter...
This paper reports about the development of a piezoelectric driven micro pump using the peristaltic ...
The identity of cells generating the first blood cells in the mammalian embryo was unknown until rec...
Shear stress, pressure, and flow rate are fluid dynamic parameters that can lead to changes in the m...
Micropumps are devices that transport, manipulate and control small volume fluids. The increasing in...
The three dimensional (3D) cultivation of stem cells in dynamic bioreactor systems is essential in t...
Microfluidics has high potential applications in medical devices for drug delivery, dosing, in micro...
The human gut microbiota (HGM) is a vast and complex community of microorganisms that inhabits the d...
The human gut microbiota (HGM) is a vast and complex community of microorganisms that inhabits the d...
In the last few years organ-on-chip (OoC) has been emerging as a new method for more reliable resear...
The aim of the work is to find an analytical model of a pneumatic micropump which was integrated int...
This study presents a double-side diaphragm peristaltic pump for efficient medium transport without ...
An investigation into the pumping flow rates and the time-resolved membrane actuation of a microperi...
This paper presents lumped-parameter simulation of dynamic characteristics of peristaltic micropumps...
A pneumatically operated peristaltic micro pump can play an important role in nanoliter or picoliter...
A pneumatically operated peristaltic micro pump can play an important role in nanoliter or picoliter...
This paper reports about the development of a piezoelectric driven micro pump using the peristaltic ...
The identity of cells generating the first blood cells in the mammalian embryo was unknown until rec...
Shear stress, pressure, and flow rate are fluid dynamic parameters that can lead to changes in the m...
Micropumps are devices that transport, manipulate and control small volume fluids. The increasing in...
The three dimensional (3D) cultivation of stem cells in dynamic bioreactor systems is essential in t...
Microfluidics has high potential applications in medical devices for drug delivery, dosing, in micro...
The human gut microbiota (HGM) is a vast and complex community of microorganisms that inhabits the d...
The human gut microbiota (HGM) is a vast and complex community of microorganisms that inhabits the d...
In the last few years organ-on-chip (OoC) has been emerging as a new method for more reliable resear...