Membrane potential is the critical parameter that reflects the excitability of a neuron, and it is usually measured by electrophysiological recordings with electrodes. However, this is an invasive approach that is constrained by the problems of lacking spatial resolution and genetic specificity. Recently, the development of a variety of fluorescent probes has made it possible to measure the activity of individual cells with high spatiotemporal resolution. The adaptation of this technique to image electrical activity in neurons has become an informative method to study neural circuits. Genetically encoded voltage indicators (GEVIs) can be used with superior performance to accurately target specific genetic populations and reveal neuronal dyn...
Comprehensively mapping and recording the electrical inputs and outputs of multiple neurons simultan...
de f Tneously monitor the membrane potential of multiple genetically targeted neurons in intact func...
We developed genetically encoded voltage indicators using a transmembrane voltage-sensing domain and...
Voltage imaging using genetically encoded voltage indicators (GEVIs) has taken the field of neurosci...
Protein engineering over the past four years has made rhodopsin-based genetically encoded voltage in...
As a “holy grail” of neuroscience, optical imaging of membrane potential could enable high resolutio...
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...
Optical imaging of voltage indicators is a promising approach for detecting the activity of neuronal...
Membrane voltages are ubiquitous throughout cell biology. Voltage is most commonly associated with e...
In the last decades, imaging membrane potential has become a fruitful approach to study neural circu...
In the last decades, imaging membrane potential has become a fruitful approach to study neural circu...
SummaryNervous systems process information by integrating the electrical activity of neurons in comp...
Comprehensively mapping and recording the electrical inputs and outputs of multiple neurons simultan...
AbstractMeasuring electrical activity in large numbers of cells with high spatial and temporal resol...
Comprehensively mapping and recording the electrical inputs and outputs of multiple neurons simultan...
de f Tneously monitor the membrane potential of multiple genetically targeted neurons in intact func...
We developed genetically encoded voltage indicators using a transmembrane voltage-sensing domain and...
Voltage imaging using genetically encoded voltage indicators (GEVIs) has taken the field of neurosci...
Protein engineering over the past four years has made rhodopsin-based genetically encoded voltage in...
As a “holy grail” of neuroscience, optical imaging of membrane potential could enable high resolutio...
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...
Optical imaging of voltage indicators is a promising approach for detecting the activity of neuronal...
Membrane voltages are ubiquitous throughout cell biology. Voltage is most commonly associated with e...
In the last decades, imaging membrane potential has become a fruitful approach to study neural circu...
In the last decades, imaging membrane potential has become a fruitful approach to study neural circu...
SummaryNervous systems process information by integrating the electrical activity of neurons in comp...
Comprehensively mapping and recording the electrical inputs and outputs of multiple neurons simultan...
AbstractMeasuring electrical activity in large numbers of cells with high spatial and temporal resol...
Comprehensively mapping and recording the electrical inputs and outputs of multiple neurons simultan...
de f Tneously monitor the membrane potential of multiple genetically targeted neurons in intact func...
We developed genetically encoded voltage indicators using a transmembrane voltage-sensing domain and...