- vom 3.3.2022

- vom 14.7.2021
Visually guided orientation in flies: case studies in computational neuroethology
In: Journal of comparative physiology , A: Neuroethology, sensory, neural, and behavioral physiology, Jg. 189 H. 6, S. 401-4092003
Visual position stabilization in the hummingbird hawk moth, *Macroglossum stellatarum L.* II. Electrophysiological analysis of neurons sensitive to wide-field image motion
In: JOURNAL OF COMPARATIVE PHYSIOLOGY A-NEUROETHOLOGY SENSORY NEURAL AND BEHAVIORAL PHYSIOLOGY, Jg. 182 H. 2, S. 239-2491998
Visual position stabilization in the hummingbird hawk moth, *Macroglossum stellatarum L.* I. Behavioural analysis
In: JOURNAL OF COMPARATIVE PHYSIOLOGY A-SENSORY NEURAL AND BEHAVIORAL PHYSIOLOGY, Jg. 182 H. 2, S. 225-2371998

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
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
Synaptic transmission of graded membrane potential changes and spikes between identified visual interneurons
In: European Journal of Neuroscience, Jg. 34 H. 5, S. 705-7162011
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
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
Sensory ecology and neural coding in anthropods
In: Zeitschrift für Naturforschung, C: Biosciences, Jg. 53 H. 7, S. 582-5921998
Representation of behaviourally relevant information by blowfly motion-sensitive visual interneurons requires precise compensatory head movements
In: The journal of experimental biology, Jg. 209 H. 7, S. 1251-12602006
Outdoor performance of a motion-sensitive neuron in the blowfly
In: Vision research, Jg. 41 H. 27, S. 3627-36372001
Optomotor course control in flies with largely asymmetric visual input
In: Journal of Comparative Physiology A, Jg. 186 H. 1, S. 45-552000
On the computations analyzing natural optic flow: Quantitative model analysis of the blowfly motion vision pathway
In: J Neurosci., Jg. 25 H. 27, S. 6435-64482005
Octopaminergic modulation of contrast gain adaptation in fly visual motion-sensitive neurons
In: European Journal of Neuroscience, Jg. 36 H. 8, S. 3030-30392012
Octopaminergic modulation of a fly visual motion-sensitive neuron during stimulation with naturalistic optic flow
In: Frontiers in Behavioral Neuroscience, Jg. 7, S. 155 ff.2013
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

Neuronal representation of optic flow experienced by unilaterally blinded flies on their mean walking trajectories
In: JOURNAL OF COMPARATIVE PHYSIOLOGY A-SENSORY NEURAL AND BEHAVIORAL PHYSIOLOGY, Jg. 186 H. 5, S. 467-4792000
