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Journal of Physics D: Applied Physics, ISSN 0022-3727, 10/2018, Volume 51, Issue 50, p. 504003
To understand the circuitry of the brain, it is essential to clarify the functional connectivity among distinct neuronal populations. For this purpose,... 
GCaMP | GEVI | hippocampus | GECI | ArcLight | synaptic excitation | synaptic inhibition | PHYSICS, APPLIED | HYBRID VOLTAGE SENSOR | PYRAMIDAL NEURONS | CONNECTIVITY | IN-VIVO | DYNAMICS | SYNAPTIC POTENTIALS | ELECTRICAL-ACTIVITY | FLUORESCENT PROTEIN | BRAIN | INTERNEURONS | Genetically-encoded Ca2+ indicators | Genetically-encoded voltage indicators
Journal Article
Frontiers in Synaptic Neuroscience, ISSN 1663-3563, 2016, Volume 8, p. 22
The age of genetically encoded voltage indicators (GEVIs) has matured to the point that changes in membrane potential can now be observed optically in vivo.... 
In vivo | Brain slices | Optogenetics | Genetically-encoded voltage indicators | Synaptic activity | Medical research | Neurosciences | Neurons | Medicine, Experimental | Genetic aspects | Research | Synapses | GEVI | in vivo imaging | Voltage Imaging | brain slices | fluorescence
Journal Article
Journal of Neurogenetics: Neurogenetics of Connectomes: From Fly to Fish, ISSN 0167-7063, 04/2016, Volume 30, Issue 2, pp. 80 - 88
Journal Article
Cell Reports, ISSN 2211-1247, 01/2019, Volume 26, Issue 3, pp. 802 - 813.e4
Imaging voltage using fluorescent-based sensors could be an ideal technique to probe neural circuits with high spatiotemporal resolution. However, due to... 
single cell | optical field potential | in vitro | 2-photon microscopy | genetically encoded voltage indicators | wide-field imaging | 1-photon microscopy | in vivo | in vitro | in vivo | DENDRITIC SPINES | MEMBRANE-POTENTIAL SIGNALS | RECORDINGS | VISUAL-CORTEX | CALCIUM | TRANSIENTS | RESOLUTION | NEURONS | ELECTRICAL-ACTIVITY | FLUORESCENT PROTEINS | CELL BIOLOGY
Journal Article
FRONTIERS IN CELLULAR NEUROSCIENCE, ISSN 1662-5102, 02/2019, Volume 13, p. 53
Journal Article
Journal Article
Physiological Reports, ISSN 2051-817X, 07/2015, Volume 3, Issue 7, pp. e12468 - n/a
Understanding how behavior emerges from brain electrical activity is one of the ultimate goals of neuroscience. To achieve this goal we require methods for... 
L2/3 | voltage imaging | genetically encoded voltage indicator | Cortex | optogenetics | Optogenetics | Genetically encoded voltage indicator | Voltage imaging | Neuroimaging | Brain research | Neurons | Pyramidal cells | Brain slice preparation | Blindness | Voltage | Nervous system | Laboratory animals
Journal Article
eLife, ISSN 2050-084X, 11/2015, Volume 4, Issue 2015, p. e10482
Voltage-sensing domains (VSDs) underlie the movement of voltage-gated ion channels, as well as the voltage-sensitive fluorescent responses observed from a... 
Animals | Membrane Potentials | Xenopus laevis | Fluorescent Dyes - metabolism | Fluorometry - methods | Ion Channel Gating | Luminescent Proteins - metabolism | Physiological aspects | Ion channels | Fluorimetry | Methods
Journal Article
Journal of Visualized Experiments, ISSN 1940-087X, 02/2016, Volume 2016, Issue 108, p. e53566
Journal Article