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Coupling optogenetic stimulation with NanoLuc-based luminescence (BRET) Ca++ sensing.Academic Article Why?
Illuminating neural circuits and behaviour in Caenorhabditis elegans with optogenetics.Academic Article Why?
Near-Infrared-Light Activatable Nanoparticles for Deep-Tissue-Penetrating Wireless Optogenetics.Academic Article Why?
Optogenetic therapy restores retinal activity in primate for at least a year following photoreceptor ablation.Academic Article Why?
Dye-Sensitized Core/Active Shell Upconversion Nanoparticles for Optogenetics and Bioimaging Applications.Academic Article Why?
Optogenetic Control of Voltage-Gated Calcium Channels.Academic Article Why?
Optogenetic stimulation of the cochlear nucleus using channelrhodopsin-2 evokes activity in the central auditory pathways.Academic Article Why?
Simultaneous optogenetic manipulation and calcium imaging in freely moving C. elegans.Academic Article Why?
Nano-optogenetic immunotherapy.Academic Article Why?
Near-infrared photoactivatable control of Ca2+ signaling and optogenetic immunomodulationAcademic Article Why?
Optogenetic Immunomodulation: Shedding Light on Antitumor ImmunityAcademic Article Why?
Optogenetic manipulation of neural activity in freely moving Caenorhabditis elegans.Academic Article Why?
Optogenetic Stimulation of Single Ganglion Cells in the Living Primate Fovea.Academic Article Why?
OptogeneticsConcept Why?
Neuronal regeneration in C. elegans requires subcellular calcium release by ryanodine receptor channels and can be enhanced by optogenetic stimulation.Academic Article Why?
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