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Targeting GtACR2 to the neuronal soma leads to enhanced photocurrent

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Silencing Neurons: Tools, Applications, and Experimental

High-Speed All-Optical Neural Interfaces with 3D Temporally Focused Holography

Probing neural codes with two-photon holographic optogenetics

Optogenetic silencing of neurotransmitter release with a naturally

Two-Photon Bidirectional Control and Imaging of Neuronal

PDF) High-efficiency optogenetic silencing with soma-targeted anion-conducting channelrhodopsins

Cells, Free Full-Text

Two-Photon Bidirectional Control and Imaging of Neuronal

Probing neural codes with two-photon holographic optogenetics

High-efficiency optogenetic silencing with soma-targeted anion-conducting channelrhodopsins

Targeting GtACR2 to the neuronal soma leads to enhanced

Frontiers Quantitative analysis of the optogenetic excitability

Katayun COHEN-KASHI-MALINA, Staff scientist, PhD, Weizmann Institute of Science, Reẖovot, weizmann, Department of Neurobiology

Two-Photon Bidirectional Control and Imaging of Neuronal

Aion is a bistable anion-conducting channelrhodopsin that provides