Roland Kern
Affiliations: | 1995- | Biology, Neurobiology | Bielefeld University, Bielefeld, Nordrhein-Westfalen, Germany |
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Parents
Sign in to add mentorMartin Egelhaaf | post-doc | 1995- | Bielefeld University | |
(later research scientist) |
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Publications
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Li J, Niemeier M, Kern R, et al. (2021) Disentangling of Local and Wide-Field Motion Adaptation. Frontiers in Neural Circuits. 15: 713285 |
Lobecke A, Kern R, Egelhaaf M. (2017) Taking a goal-centred dynamic snapshot as a possibility for local homing in initially naïve bumblebees. The Journal of Experimental Biology |
Ullrich TW, Kern R, Egelhaaf M. (2014) Influence of environmental information in natural scenes and the effects of motion adaptation on a fly motion-sensitive neuron during simulated flight. Biology Open. 4: 13-21 |
Egelhaaf M, Kern R, Lindemann JP. (2014) Motion as a source of environmental information: a fresh view on biological motion computation by insect brains. Frontiers in Neural Circuits. 8: 127 |
Ullrich TW, Kern R, Egelhaaf M. (2014) Texture-defined objects influence responses of blowfly motion-sensitive neurons under natural dynamical conditions. Frontiers in Integrative Neuroscience. 8: 34 |
Rien D, Kern R, Kurtz R. (2013) Octopaminergic modulation of a fly visual motion-sensitive neuron during stimulation with naturalistic optic flow. Frontiers in Behavioral Neuroscience. 7: 155 |
Eckmeier D, Kern R, Egelhaaf M, et al. (2013) Encoding of naturalistic optic flow by motion sensitive neurons of nucleus rotundus in the zebra finch (Taeniopygia guttata). Frontiers in Integrative Neuroscience. 7: 68 |
Egelhaaf M, Boeddeker N, Kern R, et al. (2012) Spatial vision in insects is facilitated by shaping the dynamics of visual input through behavioral action. Frontiers in Neural Circuits. 6: 108 |
Rien D, Kern R, Kurtz R. (2012) Octopaminergic modulation of contrast gain adaptation in fly visual motion-sensitive neurons. The European Journal of Neuroscience. 36: 3030-9 |
Kern R, Boeddeker N, Dittmar L, et al. (2012) Blowfly flight characteristics are shaped by environmental features and controlled by optic flow information. The Journal of Experimental Biology. 215: 2501-14 |