9 ms·
Connectomes require not-so-accessible equipment such as fMRI or MRI machines. Nevertheless, the best way to visualize it in my opinion is via the Brainstorm pac
by disabled 5y ago
Connectomes require not-so-accessible equipment such as fMRI or MRI machines. Nevertheless, the best way to visualize it in my opinion is via the Brainstorm package (created by University of Southern California) in MATLAB.
Honestly, the holy grail is really here and it is open sourced. It only requires EEG: https://direct.mit.edu/neco/article-abstract/33/4/967/97477/Real-Time-Decoding-of-Attentional-States-Using?redirectedFrom=fulltext https://direct.mit.edu/neco/article-abstract/33/4/967/97477/...
You can use FreeEEG32 with the prior link, which is coming out very soon (I spend a lot of time with the discord chat people who created this system): https://www.crowdsupply.com/neuroidss/freeeeg32 https://www.crowdsupply.com/neuroidss/freeeeg32
To use dry active electrodes (in lieu of wet electrodes—aka gel in your hair) with FreeEEG32, you can make your own EEG cap with dry electrodes—using this page to figure it out: https://hackaday.io/project/13285-openld-lucid-dreaming-research-platform/log/46070-the-hardware-openld-electrodes https://hackaday.io/project/13285-openld-lucid-dreaming-rese...
- twofornone 5y agoAny chance you have a link to the full paper in that first source?
- disabled 5y agoI don’t have a copy that I can redistribute online. However the repo is found via here: https://github.com/gretatuckute https://github.com/gretatuckute
- seesawtron 5y agoThe article is about micro-scale connectomes where each connection from each neuron to another neuron is identified. This is done using Electron Microscopes at nanometer resolution imaging. You are referring to fMRI/MRI based macro-scale connectomes where connection resolution is at the scales of thousands of neurons without any knowledge to wiring diagram at single-neuron resolution.