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Red-Shifted Voltage-Sensitive Fluorescent Proteins
Amelie Perron
, Hiroki Mutoh
, Thomas Launey
,
Thomas Knöpfel
*
*
Corresponding author for this work
Department of Physics
Research output
:
Contribution to journal
›
Journal article
›
peer-review
82
Citations (Scopus)
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Keyphrases
Electrical Signal
100%
Voltage-sensitive Fluorescent Proteins
100%
In Vivo Imaging
50%
Cultured Hippocampal Neurons
50%
Phosphatase
50%
Spectral Properties
50%
Voltage Dependence
50%
Heterogeneous Population
50%
Optogenetics
50%
Less Invasive
50%
Nerve Cells
50%
Brain Function
50%
Single-cell Resolution
50%
Neuronal Circuits
50%
Operation Mechanism
50%
Fluorescent Protein
50%
Genetically Encoded
50%
Structural Rearrangement
50%
Operand
50%
Optical Recording
50%
Voltage Sensor Domain
50%
Voltage Sensor
50%
Molecular Fusion
50%
Ciona Intestinalis
50%
Microelectrode Recording
50%
Number of Neurons
50%
Temporal Averaging
50%
Recording Techniques
50%
Small number of Cells
50%
Neuroscience
Nervous System Cell
100%
Brain Function
100%
Phosphatase
100%
Optogenetics
100%
Optical Recording
100%
Ciona intestinalis
100%
Biochemistry, Genetics and Molecular Biology
Electric Potential
100%
Hippocampal Neuronal Culture
20%
Phosphatase
20%
Optogenetics
20%
Brain Function
20%
Ciona intestinalis
20%
Microelectrode
20%