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Egelhaaf

Showing results (101-110 of 274) with videos related to

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Roux'S Archives of Developmental Biology : the Official Organ of the EDBO|March 18, 2017
Ecdysone and a dietary alkaloid interact in the development of the pheromone gland of a male moth (Creatonotos, Lepidoptera: Arctiidae)Beate Schmitz, Martina Buck, Albrecht Egelhaaf, et al.
Plos Computational Biology|October 13, 2020
Visually guided homing of bumblebees in ambiguous situations: A behavioural and modelling studyCharlotte Doussot, Olivier J N Bertrand, Martin Egelhaaf
Frontiers in Behavioral Neuroscience|February 5, 2021
The Critical Role of Head Movements for Spatial Representation During Bumblebees Learning FlightCharlotte Doussot, Olivier J N Bertrand, Martin Egelhaaf
The Journal of Experimental Biology|March 21, 2006
Representation of behaviourally relevant information by blowfly motion-sensitive visual interneurons requires precise compensatory head movementsR Kern, J H van Hateren, M Egelhaaf
Biological Cybernetics|November 21, 2002
Speed tuning in elementary motion detectors of the correlation typeJ M Zanker, M V Srinivasan, M Egelhaaf
Frontiers in Integrative Neuroscience|April 10, 2012
Species-Specific Flight Styles of Flies are Reflected in the Response Dynamics of a Homolog Motion-Sensitive NeuronBart R H Geurten, Roland Kern, Martin Egelhaaf
Frontiers in Behavioral Neuroscience|May 5, 2011
The behavioral relevance of landmark texture for honeybee homingLaura Dittmar, Martin Egelhaaf, Wolfgang Stürzl, et al.
Frontiers in Behavioral Neuroscience|January 27, 2012
Prototypical components of honeybee homing flight behavior depend on the visual appearance of objects surrounding the goalElke Braun, Laura Dittmar, Norbert Boeddeker, et al.
BMC Biology|April 14, 2010
Localized direction selective responses in the dendrites of visual interneurons of the flyChristian Spalthoff, Martin Egelhaaf, Philip Tinnefeld, et al.
Bioinspiration & Biomimetics|August 7, 2010
Mimicking honeybee eyes with a 280 degrees field of view catadioptric imaging systemW Stürzl, N Boeddeker, L Dittmar, et al.
Pageof 28

Showing results (101-110 of 274) with videos related to

Sort By:
Pageof 28
Roux'S Archives of Developmental Biology : the Official Organ of the EDBO|March 18, 2017
Ecdysone and a dietary alkaloid interact in the development of the pheromone gland of a male moth (Creatonotos, Lepidoptera: Arctiidae)Beate Schmitz, Martina Buck, Albrecht Egelhaaf, et al.
Plos Computational Biology|October 13, 2020
Visually guided homing of bumblebees in ambiguous situations: A behavioural and modelling studyCharlotte Doussot, Olivier J N Bertrand, Martin Egelhaaf
Frontiers in Behavioral Neuroscience|February 5, 2021
The Critical Role of Head Movements for Spatial Representation During Bumblebees Learning FlightCharlotte Doussot, Olivier J N Bertrand, Martin Egelhaaf
The Journal of Experimental Biology|March 21, 2006
Representation of behaviourally relevant information by blowfly motion-sensitive visual interneurons requires precise compensatory head movementsR Kern, J H van Hateren, M Egelhaaf
Biological Cybernetics|November 21, 2002
Speed tuning in elementary motion detectors of the correlation typeJ M Zanker, M V Srinivasan, M Egelhaaf
Frontiers in Integrative Neuroscience|April 10, 2012
Species-Specific Flight Styles of Flies are Reflected in the Response Dynamics of a Homolog Motion-Sensitive NeuronBart R H Geurten, Roland Kern, Martin Egelhaaf
Frontiers in Behavioral Neuroscience|May 5, 2011
The behavioral relevance of landmark texture for honeybee homingLaura Dittmar, Martin Egelhaaf, Wolfgang Stürzl, et al.
Frontiers in Behavioral Neuroscience|January 27, 2012
Prototypical components of honeybee homing flight behavior depend on the visual appearance of objects surrounding the goalElke Braun, Laura Dittmar, Norbert Boeddeker, et al.
BMC Biology|April 14, 2010
Localized direction selective responses in the dendrites of visual interneurons of the flyChristian Spalthoff, Martin Egelhaaf, Philip Tinnefeld, et al.
Bioinspiration & Biomimetics|August 7, 2010
Mimicking honeybee eyes with a 280 degrees field of view catadioptric imaging systemW Stürzl, N Boeddeker, L Dittmar, et al.
Pageof 28