Miniaturization and Integration of 3D Printed Microfluidics
1–10 of 21 posts
Re: Miniaturization and Integration of 3D Printed Microfluidics
#2edit: there is download pdf option
Re: Miniaturization and Integration of 3D Printed Microfluidics
#3Anyway, I do wonder about the feasibility of microfluidics in general. It's become quite popular in recent years (hey, Theranos' whole thing was actually microfluidics!!), but I find lack of blowout successes riding on microfluidics to be something of a concern. I don't know if whether that's because actually delivering with a microfluidics chip takes so much resources that any lab taking on a microfluidics project will then be robbed of resources to work on anything else, or if because orchestrating a dance of small quantities of fluids traversing elaborate pathways here and there at controlled rates, measuring quantities and setting up open feedback loop systems and setting up logic systems is just so hard and that's why I don't hear about happy reportings.
Re: Miniaturization and Integration of 3D Printed Microfluidics
#4Why do people need to constantly reinvent presentation formats? Literally nobody wants this, it only makes the information harder to view.
This is like a bad flashback to flash Nature is going into the dns blackhole.
Re: Miniaturization and Integration of 3D Printed Microfluidics
#5The ui is hot garbage on mobile. No zoom, no visible or hinted access to menus, tiny ass font. It's not clever or attractive. It's a nasty bait and switch - presenting a lure of interesting information, then making it inaccessible in a way that forces the user to waste time trying to figure out how the hell to get at it. Why do people need to constantly reinvent presentation formats? Literally nobody wants this, it o…
Re: Miniaturization and Integration of 3D Printed Microfluidics
#6I wish the paper included more details on what sort of connectors they use to connect the tubes carrying fluids to the microfluidics chips. Fig.6A shows 9 abstract-looking cylinders, but it's not really clear what's going on there or how it works out. Perhaps the connectors themselves were printed, lending themselves to be easily connected with elastic-tubes -- but you'd have to be super careful when handling those.…
Re: Miniaturization and Integration of 3D Printed Microfluidics
#7The ui is hot garbage on mobile. No zoom, no visible or hinted access to menus, tiny ass font. It's not clever or attractive. It's a nasty bait and switch - presenting a lure of interesting information, then making it inaccessible in a way that forces the user to waste time trying to figure out how the hell to get at it. Why do people need to constantly reinvent presentation formats? Literally nobody wants this, it o…
Re: Miniaturization and Integration of 3D Printed Microfluidics
#8The ui is hot garbage on mobile. No zoom, no visible or hinted access to menus, tiny ass font. It's not clever or attractive. It's a nasty bait and switch - presenting a lure of interesting information, then making it inaccessible in a way that forces the user to waste time trying to figure out how the hell to get at it. Why do people need to constantly reinvent presentation formats? Literally nobody wants this, it o…
One explanation I can think is the person is not good at making a website. I have my own domain it just has some personal but public to the world stuff about me. It’s a mess of a WordPress site. Some things don’t work on mobile and I’m sure no one wants it lol. I just don’t know how to do it any better. But what I have done was a learning experience for sure. Maybe one day it will be better.
Re: Miniaturization and Integration of 3D Printed Microfluidics
#9I wish the paper included more details on what sort of connectors they use to connect the tubes carrying fluids to the microfluidics chips. Fig.6A shows 9 abstract-looking cylinders, but it's not really clear what's going on there or how it works out. Perhaps the connectors themselves were printed, lending themselves to be easily connected with elastic-tubes -- but you'd have to be super careful when handling those.…
https://www.idex-hs.com/store/fluidics/fluidic-connections/f...
They are stupid expensive but usually work well. An alternative is to use a biopsy punch in PDMS and simply shove a 1.6mm tube into the resulting hole. The PDMS will hold the tube securely at most pressures.
Re: Miniaturization and Integration of 3D Printed Microfluidics
#10I wish the paper included more details on what sort of connectors they use to connect the tubes carrying fluids to the microfluidics chips. Fig.6A shows 9 abstract-looking cylinders, but it's not really clear what's going on there or how it works out. Perhaps the connectors themselves were printed, lending themselves to be easily connected with elastic-tubes -- but you'd have to be super careful when handling those.…
These are the type of fitting used in many applications. https://www.idex-hs.com/store/fluidics/fluidic-connections/f... They are stupid expensive but usually work well. An alternative is to use a biopsy punch in PDMS and simply shove a 1.6mm tube into the resulting hole. The PDMS will hold the tube securely at most pressures.
Also, wowza, it pains me to see non-metric units used there. One would have thought that fields that are so deeply academic in nature would be free of imperial units!