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Showing 1 to 3 of 3 for “"genetically-encoded voltage indicators"”.

  1. Tools for Mapping the Links Between Stimuli, AffectiveStates, and Behavior through Whole-Brain Imaging inZebrafish Larvae

    … activity across extensive neuronal populations. Genetically Encoded Calcium Indicators (GECIs) and Genetically Encoded Voltage Indicators (GEVIs) provide the means to probe brain dynamics with single-cell precision. The advent of lightsheet microscopy technologies has further enriched our …

    mit Repository record for Tools for Mapping the Links Between Stimuli, AffectiveStates, and Behavior through Whole-Brain Imaging inZebrafish Larvae (opens in a new tab)

  2. Imagining the Voltage of Neurons Distributed Across Entire Brains of Larval Zebrafish

    … whole-brain calcium imaging, recent advances in genetically encoded voltage indicators (GEVIs) raise the possibility of imaging voltage of neurons distributed across brains. However, due to the high imaging speed and signal-to-noise ratio requirements of GEVIs, microscopy hardware to date has …

    mit Repository record for Imagining the Voltage of Neurons Distributed Across Entire Brains of Larval Zebrafish (opens in a new tab)

  3. MiniFAST: A Fast and Sensitive Microscope for in vivo Neural Imaging

    … shown exciting results from imaging fluorescent genetically encoded calcium indicators (GECIs) which have bright and slow dynamics (> 1 s) easily captured by most image sensors at frame rates of 30 Hz or less. However, there are many neuroscience applications which would benefit from using other …

    rice Repository record for MiniFAST: A Fast and Sensitive Microscope for in vivo Neural Imaging (opens in a new tab)