Author: Fernando

Fabricating an integrated device for virus-detection.

So this is the latest iteration of the thumb-pump device we were working on this summer. As you will see in the diagrams, the idea is to ultimately have saliva go through a filtration step, with a side channel leading

Posted in NRG

Updated PETL Dialysis Images

Within the past few weeks we have been working on finalizing an architecture for PETL dialysis that can be cut out, assembled, and disassembled repetitively with precision. Within the past week we were able to replicate the results Kilean achieved

Posted in NRG

Fisher @ NRG, Summer 2017

We are happy to be back this summer. Anthony has been working on setting up a system that mimics Kilean’s dialysis devices. Our approach is different in two important ways. First, we are using PETLs, instead of PDMS/glass.  For those

Posted in NRG

FISHER team and PETL instructions

Hi all, just a quick posting to update you and deposit the current SOP and video instructions for PETLs. Nick has been working this summer on culturing cells on PETLs; its been slow, but we are finding that cells (HEKs)

Posted in NRG

Micromixing with nanomembranes “in chipo”

The idea here is to use nano membranes that have been integrated in a chip with the intention to mix otherwise laminar flow streams.   It was suggested at one of the meetings that I should superimpose the streams, then

Posted in NRG

PETL’s SEM pictures

Just wanted to show the detail of PETL channels.  A couple of interesting things:  The adhesive layer(s) are pretty thick, and look pretty smooth after heat curation.  Also, the channels are slightly beveled, probably due to craft cutter blade.

Posted in NRG

PETL mixing with a membrane (not there yet)

I followed Greg’s example and embedded a broken-membrane chip in a PETL.  The idea was to use it as a negative control before I use an intact chip.  Laminar flow should be maintained in this scenario in order for us

Posted in NRG

PETL mixer

Adding pockets (250 micron long, 76 micron deep) to the bottom of the channel (channel is 500 microns wide, 125 deep) in a 4 layer PETL  (1 inch long chip) promotes disruption of laminar flow.

Posted in NRG

Fisher Team Update, June 2015

Hi all, a quick update in case you want to know what we are up too.   This summer it will be just me at the McGrath lab; the main goal is to produce some preliminary data with an eye

Posted in NRG

Fisher Team Update Nov ’14

Hi All, just a quick post to up date you on what we are up to. 3 Things going on in the lab: Ryan continues to make his nano particles using chips, he is loading them with an anti-inflammatory agent

Posted in NRG
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