34 Titel in Klassifikation (DDC) → Naturwissenschaften und Mathematik → Biowissenschaften; Biologie → Biowissenschaften; Biologie 2
zu den Filteroptionen34 Titel in Klassifikation (DDC) → Naturwissenschaften und Mathematik → Biowissenschaften; Biologie → Biowissenschaften; Biologie
2

Ein Blick ins Cockpit der Fliege: von der Bildverarbeitung im Nervensystem zu künstlichen visuellen Systemen
In: Forschung an der Universität Bielefeld, Jg. 24, S. 9-14
Blowfly flight characteristics are shaped by environmental features and controlled by optic flow information
In: Journal of Experimental Biology, Jg. 215 H. 14, S. 2501-2514
Chasing a dummy target: smooth pursuit and velocity control in male blowflies
In: Proceedings of the Royal Society B, Biological sciences, Jg. 270 H. 1513, S. 393-399
Disentangling of Local and Wide-Field Motion Adaptation
In: Frontiers in Neural Circuits, Jg. 15
Encoding of Naturalistic Optic Flow by a Population of Blowfly Motion-Sensitive Neurons
In: J Neurophysiol., Jg. 96 H. 3, S. 1602-1614
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.
FliMax, a novel stimulus device for panoramic and highspeed presentation of behaviourally generated optic flow
In: Vision Research, Jg. 43 H. 7, S. 779-791
Function and coding in the blowfly H1 neuron during naturalistic optic flow
In: J Neurosci., Jg. 25 H. 17, S. 4343-4352
Function of a fly motion-sensitive neuron matches eye movements during free flight
In: PLoS Biology, Jg. 3 H. 6, S. e171-1138
Gaze Strategy in the Free Flying Zebra Finch ($Taeniopygia$ $guttata$)
In: PLOS ONE, Jg. 3 H. 12
Im Cockpit der Fliege
In: Forschung, Jg. 27 H. 3-4, S. 30-34
In the cockpit of the fly
In: German Research, Jg. 2003 H. 1, S. 10-13
Influence of environmental information in natural scenes and the effects of motion adaptation on a fly motion-sensitive neuron during simulated flight
In: Biology Open, Jg. 4 H. 1, S. 13-21

Motion Adaptation Enhances Object-Induced Neural Activity in Three-Dimensional Virtual Environment
In: Journal of Neuroscience, Jg. 28 H. 44, S. 11328-11332
Motion adaptation leads to parsimonious encoding of natural optic flow by blowfly motion vision system
In: J Neurophysiol., Jg. 94 H. 3, S. 1761-1769
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.
Neural encoding of behaviourally relevant visual-motion information in the fly
In: Trends in Neurosciences, Jg. 25 H. 2, S. 96-102
Neural processing of naturalistic optic flow
In: The Journal of Neuroscience, Jg. 21 H. 8, S. 1-5
