Photoactivated genetically encoded voltage indicators (GEVIs) have the potential to enable optically sectioned voltage imaging at the intersection of a photoactivation beam and an imaging beam. We developed a pooled high-throughput screen to identify archaerhodopsin mutants with enhanced photoactivation. After screening ~105 cells, we identified a novel GEVI, NovArch, whose one-photon near-infrared fluorescence is reversibly enhanced by weak one-photon blue or two-photon near-infrared excitation. Because the photoactivation leads to fluorescent signals catalytically rather than stoichiometrically, high fluorescence signals, optical sectioning, and high time resolution are achieved simultaneously at modest blue or two-photon laser power. We ...
Fluorescent reporters of membrane potential are important tools in neuroscience, offering a non-inva...
International audienceGenetically encoded voltage indicators are emerging tools for monitoring volta...
Fluorescent reporters of membrane potential are important tools in neuroscience, offering a non-inva...
We developed genetically encoded voltage indicators using a transmembrane voltage-sensing domain and...
Abstract A bright, red-shifted Genetically Encoded Voltage Indicator (GEVI) was developed using a mo...
Comprehensively mapping and recording the electrical inputs and outputs of multiple neurons simultan...
Comprehensively mapping and recording the electrical inputs and outputs of multiple neurons simultan...
A longstanding goal in neuroscience has been to develop techniques for imaging the voltage dynamics ...
Genetically encoded fluorescent reporters of membrane potential promise to reveal aspects of neural ...
These authors contributed equally to this work. Genetically encoded fluorescent reporters of membran...
Membrane potential is the critical parameter that reflects the excitability of a neuron, and it is u...
Genetically encoded voltage indicators, particularly those based on microbial rhodopsins, are gainin...
Optical monitoring of neuronal voltage using fluorescent indicators is a powerful approach for the i...
Genetically encoded voltage indicators, particularly those based on microbial rhodopsins, are gainin...
Probing the neural circuit dynamics underlying behaviour would benefit greatly from improved genetic...
Fluorescent reporters of membrane potential are important tools in neuroscience, offering a non-inva...
International audienceGenetically encoded voltage indicators are emerging tools for monitoring volta...
Fluorescent reporters of membrane potential are important tools in neuroscience, offering a non-inva...
We developed genetically encoded voltage indicators using a transmembrane voltage-sensing domain and...
Abstract A bright, red-shifted Genetically Encoded Voltage Indicator (GEVI) was developed using a mo...
Comprehensively mapping and recording the electrical inputs and outputs of multiple neurons simultan...
Comprehensively mapping and recording the electrical inputs and outputs of multiple neurons simultan...
A longstanding goal in neuroscience has been to develop techniques for imaging the voltage dynamics ...
Genetically encoded fluorescent reporters of membrane potential promise to reveal aspects of neural ...
These authors contributed equally to this work. Genetically encoded fluorescent reporters of membran...
Membrane potential is the critical parameter that reflects the excitability of a neuron, and it is u...
Genetically encoded voltage indicators, particularly those based on microbial rhodopsins, are gainin...
Optical monitoring of neuronal voltage using fluorescent indicators is a powerful approach for the i...
Genetically encoded voltage indicators, particularly those based on microbial rhodopsins, are gainin...
Probing the neural circuit dynamics underlying behaviour would benefit greatly from improved genetic...
Fluorescent reporters of membrane potential are important tools in neuroscience, offering a non-inva...
International audienceGenetically encoded voltage indicators are emerging tools for monitoring volta...
Fluorescent reporters of membrane potential are important tools in neuroscience, offering a non-inva...