New Mr Pool c/o @FoJAk3 on Twitter... 3.15 - 6:26 pm Eastern.

This is the 3rd time Mr Pool has tweeted this pic!

https://twitter.com/FoJAk3/status/1371588874863009795?s=20

In response Kim Runner to her Publication

Gold = NESARA / GESARA
crypto XDC (XinFin) = Copper
also looks like the logos of the WHO & UN

In response Kristina Simpson to his Publication
In response The Mac to his Publication
In response The Mac to his Publication
In response The Mac to his Publication
In response The Mac to his Publication
In response The Mac to his Publication
In response The Mac to his Publication
In response The Mac to his Publication
In response The Mac to his Publication
In response The Mac to his Publication
In response The Mac to his Publication
In response The Mac to his Publication
In response The Mac to his Publication
In response The Mac to his Publication
In response The Mac to his Publication
In response The Mac to his Publication
In response The Mac to his Publication
In response The Mac to his Publication
In response The Mac to his Publication
In response The Mac to his Publication
In response The Mac to his Publication
In response The Mac to his Publication
In response The Mac to his Publication
In response The Mac to his Publication
In response The Mac to his Publication
In response The Mac to his Publication

I wish I understood what the heck this meant, but I'm homeschooling my 7 and 4 year old and I have about 3 braincells left by this time of day. 🥴

In response Kristina Simpson to his Publication

Bless your heart. 🙏🏻❤️

The most commonly used ion channel for stimulation in optogenetics is Channelrhodopsin-2. Neurons are triggered in the same way (by moving ions from outside the cell to the inside). Once a certain number of positive ions have crossed the cell membrane, a threshold is reached which causes the neuron to fire.

In response The Mac to his Publication

Only people mentioned by @TheMac in this post can reply

In response The Mac to his Publication

Optogenetics enables manipulation of biological processes with light at high spatio-temporal resolution to control the behavior of cells, networks, or even whole animals.

In response The Mac to his Publication

There are mainly two types of NIR-activatable optogenetic tools: one uses lanthanide-doped upconversion nanoparticles to transduce NIR light to visible light to modulate classical opsin-expressing neurons; the other type couples with an NIR absorber to convert NIR light to heat to activate thermosensitive proteins. These NIR-activatable optogenetic tools enable low-invasive "remote control" activation and inhibition of cellular signaling pathways.

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