
Local motion adaptation enhances the representation of spatial structure at EMD arrays
In: PLOS Computational Biology, Jg. 13 H. 122017
Motion as a source of environmental information: a fresh view on biological motion computation by insect brains
In: Frontiers in Neural Circuits, Jg. 8, S. 127 ff.2014
Neuronal encoding of object and distance information: a model simulation study on naturalistic optic flow processing
In: Frontiers in Neural Circuits, Jg. 6, S. 14 ff.2012

Object representation and distance encoding in three-dimensional environments by a neural circuit in the visual system of the blowfly
In: Journal of Neurophysiology, Jg. 107 H. 12, S. 3446-34572012

Pattern-Dependent Response Modulations in Motion-Sensitive Visual Interneurons-A Model Study
In: PLoS ONE, Jg. 6 H. 72011
Peripheral Processing Facilitates Optic Flow-Based Depth Perception
In: Frontiers in Computational Neuroscience, Jg. 10 H. 102016


Prototypical Components of Honeybee Homing Flight Behavior Depend on the Visual Appearance of Objects Surrounding the Goal
In: Frontiers in Behavioral Neuroscience, Jg. 6 H. January, S. 1-162012
Resource-efficient bio-inspired visual processing on the hexapod walking robot HECTOR.
In: PloS one, Jg. 15 H. 42020

Spatial vision in insects is facilitated by shaping the dynamics of visual input through behavioral action
In: Frontiers in Neural Circuits, Jg. 6, S. 108 ff.2012
Species-Specific Flight Styles of Flies are Reflected in the Response Dynamics of a Homolog Motion-Sensitive Neuron
In: Frontiers in Integrative Neuroscience, Jg. 6, S. 11 ff.2012
Taking a goal-centred dynamic snapshot as a possibility for local homing in initially naïve bumblebees
In: The Journal of Experimental Biology, Jg. 221 H. 22018
Temporal Statistics of Natural Image Sequences Generated by Movements with Insect Flight Characteristics
In: PLoS ONE, Jg. 9 H. 102014
Texture dependence of motion sensing and free flight behavior in blowflies
In: Frontiers in Behavioral Neuroscience, Jg. 6, S. 92 ff.2013
Texture-defined objects influence responses of blowfly motion-sensitive neurons under natural dynamical conditions
In: Frontiers in Integrative Neuroscience, Jg. 8, S. 34 ff.2014
