The behavioural relevance of landmark texture for honeybee homing
In: Frontiers in Behavioral Neuroscience, Jg. 5 H. 5, S. 20 ff.2011
A Bio-inspired Collision Avoidance Model Based on Spatial Information Derived from Motion Detectors Leads to Common Routes
In: PLoS Computational Biology, Jg. 11 H. 112015


Blowfly flight characteristics are shaped by environmental features and controlled by optic flow information
In: Journal of Experimental Biology, Jg. 215 H. 14, S. 2501-25142012

Contrast-Independent Biologically Inspired Motion Detection
In: Sensors, Jg. 11 H. 12, S. 3303-33262011
Encoding of naturalistic optic flow by motion sensitive neurons of nucleus rotundus in the zebra finch ($Taeniopygia$ $guttata$)
In: Frontiers in Integrative Neuroscience, Jg. 7, S. 68 ff.2013



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

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
Visual motion-sensitive neurons in the bumblebee brain convey information about landmarks during a navigational task
In: Frontiers in Behavioral Neuroscience, Jg. 8, S. 335 ff.2014
Visually guided homing of bumblebees in ambiguous situations: A behavioural and modelling study.
In: PLoS computational biology, Jg. 16 H. 102020