OpenFluo: A free open-source software for optophysiological data analyses (original) (raw)

Neural Organization and Visual Processing in the Anterior Optic Tubercle of the Honeybee Brain

Jean-Christophe SANDOZ

Journal of Neuroscience, 2011

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A semi-in-vivo preparation for optical recording of the insect brain

Jasdan Joerges, R. Menzel

Journal of Neuroscience Methods, 1997

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SIMULTANEOUS MORPHOLOGICAL AND FUNCTIONAL IMAGING OF THE HONEY BEE’S BRAIN BY TWO-PHOTON MICROSCOPY

Federica Trona, Albrecht Haase, Giorgio Vallortigara

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Visual Processing in the Central Bee Brain

Wulfila Gronenberg

Journal of Neuroscience, 2009

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Determination of Photoreceptor Cell Spectral Sensitivity in an Insect Model from In Vivo Intracellular Recordings

Daniel Osorio

Journal of Visualized Experiments, 2016

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Slow and Spike Potentials Recorded from Retinula Cells of the Honeybee Drone in Response to Light

Fritz Baumann

The Journal of General Physiology, 1968

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Determination of Photoreceptor Cell Spectral Sensitivity in an Insect Model from In Vivo Intracellular Recordings

Daniel Arias Osorio

Journal of Visualized Experiments, 2016

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Ocellar interneurons in the honeybee

Uwe Homberg

Journal of Comparative Physiology A-neuroethology Sensory Neural and Behavioral Physiology, 1984

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Relating Neuronal to Behavioral Performance: Variability of Optomotor Responses in the Blowfly

Anne-Kathrin Warzecha

PLoS ONE, 2011

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Optical imaging of concealed brain activity using a gold mirror in honeybees

T. Franke, R. Menzel

Journal of Insect Physiology, 2012

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Color processing in the medulla of the bumblebee (Apidae: Bombus impatiens )

Wulfila Gronenberg

The Journal of Comparative Neurology, 2009

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Chromatic Processing in the Anterior Optic Tubercle of the Honey Bee Brain

Jean-Christophe SANDOZ

Journal of Neuroscience, 2013

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In Vivo Performance of Genetically Encoded Indicators of Neural Activity in Flies

Maximilian Joesch

Journal of Neuroscience, 2005

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Color opponent neurons of the honeybee in a heterochromatic flicker test

Alexa Riehle

Journal of Comparative Physiology ? A, 1981

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Regression-Based Identification of Behavior-Encoding Neurons During Large-Scale Optical Imaging of Neural Activity at Cellular Resolution

Rebecca Burdine, E. Aksay, D. Tank

Journal of Neurophysiology, 2011

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Monitoring brain activity and behaviour in freely moving Drosophila larvae using bioluminescence

Konstantinos Lagogiannis, J. Douglas Armstrong

Scientific Reports, 2018

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Fluorescence monitoring of electrical responses from small neurons and their processes

A. Fine

Biophysical Journal, 1983

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Spectral response of moving detecting and ?Sustaining? fibres in the optic lobe of the bee

Randolf Menzel

Journal of Comparative Physiology, 1973

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Mapping chromatic pathways in theDrosophilavisual system

Chun-yuan Ting

Journal of Comparative Neurology, 2015

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In-vivo two-photon imaging of the honey bee antennal lobe

Renzo Antolini, Albrecht Haase, Giorgio Vallortigara

Biomedical Optics Express, 2010

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Flyception: imaging brain activity in freely walking fruit flies

Ralph Greenspan

Nature Methods, 2016

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Three-dimensional average-shape atlas of the honeybee brain and its applications

Sabine Krofczik, Hans-Christian Hege

The Journal of Comparative Neurology, 2005

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The new method for studying neuronal activity: Optogenetics

Maxim Matveev

St. Petersburg Polytechnical University Journal: Physics and Mathematics, 2015

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Optogenetic mapping of brain circuitry

malvika katarya

Nanosystems in Engineering and Medicine, 2012

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Sustained oscillations in an insect visual system

Uwe Homberg

Naturwissenschaften, 1998

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In vivo imaging of calcium accumulation in fly interneurons as elicited by visual motion stimulation

Martin Egelhaaf

Proceedings of the National Academy of Sciences, 1992

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Two-Photon Calcium Imaging Reveals an Odor-Evoked Map of Activity in the Fly Brain

Jing Wang

Cell, 2003

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