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Frontiers in Integrative Neuroscience
|
May 9, 2014
Texture-defined objects influence responses of blowfly motion-sensitive neurons under natural dynamical conditions
Thomas W Ullrich, Roland Kern, Martin Egelhaaf
Wilhelm Roux'S Archives of Developmental Biology
|
March 18, 2017
[Distribution of mitoses and<sup>3</sup>H-thymidine incorporation in proliferating eye discs ofEphestia kuehniella Zeller]
Albrecht Egelhaaf, Peter Berndt, Heinz-Werner Küthe
Journal of Neurophysiology
|
February 1, 1993
Neural circuit tuning fly visual interneurons to motion of small objects. I. Dissection of the circuit by pharmacological and photoinactivation techniques
A K Warzecha, M Egelhaaf, A Borst
Journal of Neurophysiology
|
May 20, 2005
Population coding of self-motion: applying bayesian analysis to a population of visual interneurons in the fly
Katja Karmeier, Holger G Krapp, Martin Egelhaaf
Physical Chemistry Chemical Physics : PCCP
|
January 6, 2023
Protein solutions close to liquid-liquid phase separation exhibit a universal osmotic equation of state and dynamical behavior
Jan Hansen, Stefan U Egelhaaf, Florian Platten
Physical Review. E
|
October 3, 2019
Traveling band formation in feedback-driven colloids
Sonja Tarama, Stefan U Egelhaaf, Hartmut Löwen
The Journal of Experimental Biology
|
December 30, 2009
Behavioural state affects motion-sensitive neurones in the fly visual system
R Rosner, M Egelhaaf, A-K Warzecha
The Journal of Experimental Biology
|
November 4, 2017
Head orientation of walking blowflies is controlled by visual and mechanical cues
José Monteagudo, Jens P Lindemann, Martin Egelhaaf
Journal of Computational Neuroscience
|
April 24, 2001
Membrane potential fluctuations determine the precision of spike timing and synchronous activity: a model study
J Kretzberg, M Egelhaaf, A K Warzecha
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience
|
August 23, 2001
Transfer of visual motion information via graded synapses operates linearly in the natural activity range
R Kurtz, A K Warzecha, M Egelhaaf
Page
of 28
Search research articles
Search
Showing results (71-80 of 274) with videos related to
Sort By:
Page
of 28
Frontiers in Integrative Neuroscience
|
May 9, 2014
Texture-defined objects influence responses of blowfly motion-sensitive neurons under natural dynamical conditions
Thomas W Ullrich, Roland Kern, Martin Egelhaaf
Wilhelm Roux'S Archives of Developmental Biology
|
March 18, 2017
[Distribution of mitoses and<sup>3</sup>H-thymidine incorporation in proliferating eye discs ofEphestia kuehniella Zeller]
Albrecht Egelhaaf, Peter Berndt, Heinz-Werner Küthe
Journal of Neurophysiology
|
February 1, 1993
Neural circuit tuning fly visual interneurons to motion of small objects. I. Dissection of the circuit by pharmacological and photoinactivation techniques
A K Warzecha, M Egelhaaf, A Borst
Journal of Neurophysiology
|
May 20, 2005
Population coding of self-motion: applying bayesian analysis to a population of visual interneurons in the fly
Katja Karmeier, Holger G Krapp, Martin Egelhaaf
Physical Chemistry Chemical Physics : PCCP
|
January 6, 2023
Protein solutions close to liquid-liquid phase separation exhibit a universal osmotic equation of state and dynamical behavior
Jan Hansen, Stefan U Egelhaaf, Florian Platten
Physical Review. E
|
October 3, 2019
Traveling band formation in feedback-driven colloids
Sonja Tarama, Stefan U Egelhaaf, Hartmut Löwen
The Journal of Experimental Biology
|
December 30, 2009
Behavioural state affects motion-sensitive neurones in the fly visual system
R Rosner, M Egelhaaf, A-K Warzecha
The Journal of Experimental Biology
|
November 4, 2017
Head orientation of walking blowflies is controlled by visual and mechanical cues
José Monteagudo, Jens P Lindemann, Martin Egelhaaf
Journal of Computational Neuroscience
|
April 24, 2001
Membrane potential fluctuations determine the precision of spike timing and synchronous activity: a model study
J Kretzberg, M Egelhaaf, A K Warzecha
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience
|
August 23, 2001
Transfer of visual motion information via graded synapses operates linearly in the natural activity range
R Kurtz, A K Warzecha, M Egelhaaf
Page
of 28