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https://elifesciences.org/reviewed-preprints/90100v2/figures
Robust Optogenetic Inhibition with Red-light-sensitive Anion-conducting Channelrhodopsins
red light
robust
optogenetic
inhibition
sensitive
https://elifesciences.org/reviewed-preprints/86833
Diminishing neuronal acidification by channelrhodopsins with low proton conduction
diminishing
neuronal
acidification
channelrhodopsins
low
https://elifesciences.org/reviewed-preprints/106508
Blue-shifted ancyromonad channelrhodopsins for multiplex optogenetics
blue shifted
ancyromonad
channelrhodopsins
multiplex
optogenetics
https://elifesciences.org/articles/90100v1
Robust optogenetic inhibition with red-light-sensitive anion-conducting channelrhodopsins | eLife
Engineered anion-conducting channelrhodopsins with enhanced red-light sensitivity and accelerated kinetics enable precise, low-intensity optical silencing of...
red light
robust
optogenetic
inhibition
https://elifesciences.org/articles/86833/peer-reviews
Peer review in Diminishing neuronal acidification by channelrhodopsins with low proton conduction |...
Many channelrhodopsins acidify cells, but two new ones do not.
peer review
https://elifesciences.org/reviewed-preprints/86833v2/reviews
Diminishing neuronal acidification by channelrhodopsins with low proton conduction
diminishing
neuronal
acidification
channelrhodopsins
low