Author: Henry

prediction of flow distribution within a membrane-based shear-free system

Hi all, Previously we described a two-compartment flow system integrated with a nanoporous membrane in between; and we showed that the nanporous membrane effectively reduces fluid flow from one compartment to the next. Seeing that today is our last NRG

Posted in NRG

1st order approx of transmembrane pressure in Dean's chip-in-a-beaker system

Hi all, During last NRG meeting some questions are raised on what is the transmembrane pressure in Dean’s chip-in-a-beaker dialysis system and what is the direction of flow of the whole system. i gave them some thought and proposed the following

Posted in NRG

shear stress reduction via pnc-Si: analytical solution REVISITED

Hi all, A while back (in the link below) I have posted the analytical solution that allows us to solve the flow rate distribution in our shear-free system. shear stress reduction via pnc-Si: analytical solution However we do not have

Posted in NRG

Shear-free chemotaxis: potential room for improvements

One major problem that we faced with our current shear-free chemotaxis system is the lack of high image quality.  Since the silicon-nitride (SiN )grid is 100 um away from the coverslip surface on which the cells migrate, the out-of-focused SiN

Posted in NRG

Shear-free chemotaxis: nanoparticle tracking showed significant flow reduction conferred by the membrane

To assess how shear-free our [ “shear-free” chemotaxis system] is, we tracked the motion of nanoparticles in the shear-free compartment as we input a known flow rate in the flow compartment.  The nanoparticles we use are the 210 nm dragon green

Posted in NRG

Shear-free chemotaxis: linear gradient maintained after passing through the membrane, assessed via TIRF

Hi all, We have already showed in our earlier [ post ] that our shear-free chemotaxis system can indeed elicit chemotaxis, suggesting that we have successfully translated a gradient through the membrane to the shear-free side of the system where the cells

Posted in NRG

Shear-free chemotaxis in action

Hi all, this report will serve both as an update and a template for my upcoming BMES 2012 poster on the shear-free chemotaxis system. Introduction:  Because of its capability in hosting reactions and transporting materials in small volumes, microfluidics enables

Posted in NRG

shear stress reduction via pnc-Si: COMSOL simulation

Hi all!  Last time we have presented a theoretical perspective on the shear stress reduction enabled by our shear-free microfluidic system.  This time we will show an agreement between the shear-reduction predictions made by the analytical solution and a COMSOL

Posted in NRG

shear stress reduction via pnc-Si: analytical solution

Hello everyone, presented here is a theoretical perspective on the shear stress reduction enabled by our shear-free microfluidic system. Briefly speaking, the shear-free microfluidic system consists of three main components: a flow compartment, the pnc-Si membrane, and a shear-free compartment.

Posted in NRG

Simple bioreactor with the square, 5-slit pnc-Si chip

Hi all! Above is an image of the bioreactor made from the square, 5-slit pnc-Si chip and a PDMS structure.  Fused-silica capillary tubings were inserted into the bioreactor to form the inlet and the outlet for the transfer of the

Posted in NRG
0
    0
    Your Cart
    Your cart is emptyReturn to Shop