Targeting GtACR2 to the neuronal soma leads to enhanced photocurrent

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

Targeting GtACR2 to the neuronal soma leads to enhanced

Silencing of cue-associated BLA activity using stGtACR2 suppresses

Aion is a bistable anion-conducting channelrhodopsin that provides

Targeting GtACR2 to the neuronal soma leads to enhanced

Frontiers Principles of Optogenetic Methods and Their

Mathias MAHN, SNSF Ambizione Investigator, PhD, Friedrich Miescher Institute for Biomedical Research, Basel, FMI, Neurobiology Research

The effect of light and loss of light on spontaneous movement of

Ilan LAMPL, Weizmann Institute of Science, Reẖovot, weizmann, Department of Neurobiology

Single-Cell Resolution Optogenetics Via Expression of Soma

Ilan LAMPL, Weizmann Institute of Science, Reẖovot, weizmann, Department of Neurobiology

Mathias MAHN, SNSF Ambizione Investigator, PhD, Friedrich Miescher Institute for Biomedical Research, Basel, FMI, Neurobiology Research

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

Cellular resolution circuit mapping with temporal-focused

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