Publications of Dieter Wicher

Journal Article (39)

Journal Article
Wicher, D.: Sensory receptors—design principles revisited. Frontiers in Cellular Neuroscience 7, 1 (2013)
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Getahun, M. N.; Wicher, D.; Hansson, B.; Olsson, S.: Temporal response dynamics of Drosophila olfactory sensory neurons depends on receptor type and response polarity. Frontiers in Cellular Neuroscience 6, 54 (2012)
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Stensmyr, M. C.; Dweck, H.; Farhan, A.; Ibba, I.; Strutz, A.; Mukunda, L.; Linz, J.; Grabe, V.; Steck, K.; Lavista Llanos, S. et al.; Wicher, D.; Sachse, S.; Knaden, M.; Becher, P. G.; Seki, Y.; Hansson, B.: A conserved dedicated olfactory circuit for detecting harmful microbes in Drosophila. Cell 151 (6), pp. 1345 - 1357 (2012)
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Wicher, D.: Functional and evolutionary aspects of chemoreceptors. Frontiers in Cellular Neuroscience 6, 48 (2012)
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Grosse-Wilde, E.; Kuebler, L.; Bucks, S.; Vogel, H.; Wicher, D.; Hansson, B.: Antennal transcriptome of Manduca sexta. Proceedings of the National Academy of Sciences of the United States of America 108 (18), pp. 7449 - 7454 (2011)
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Olsson, S.; Getahun, M. N.; Wicher, D.; Hansson, B.: Piezo controlled microinjection: An in vivo complement for in vitro sensory studies in insects. Journal of Neuroscience Methods 201 (2), pp. 385 - 389 (2011)
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Sargsyan, V.; Getahun, M. N.; Lavista Llanos, S.; Olsson, S.; Hansson, B.; Wicher, D.: Phosphorylation via PKC regulates the function of the Drosophila odorant coreceptor. Frontiers in Cellular Neuroscience 5, 5 (2011)
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Grosse-Wilde, E.; Stieber, R.; Forstner, M.; Krieger, J.; Wicher, D.; Hansson, B.: Sex-specific odorant receptors of the tobacco hornworm Manduca sexta. Frontiers in Cellular Neuroscience 4, 22 (2010)
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Hansson, B.; Knaden, M.; Sachse, S.; Stensmyr, M.; Wicher, D.: Towards plant-odor-related olfactory neuroethology in Drosophila. Chemoecology 20 (2), pp. 51 - 61 (2010)
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Seki, Y.; Rybak, J.; Wicher, D.; Sachse, S.; Hansson, B.: Physiological and morphological characterization of local interneurons in the Drosophila antennal lobe. Journal of Neurophysiology 104 (2), pp. 1007 - 1019 (2010)
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Wicher, D.: Design principles of sensory receptors. Frontiers in Cellular Neuroscience 4, 25 (2010)
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Wicher, D.; Schäfer, R.; Bauernfeind, R.; Stensmyr, M. C.; Heller, R.; Heinemann, S. H.; Hansson, B.: dOr83b - receptor or ion channel? Annals of the New York Academy of Sciences 1170 (1), pp. 164 - 167 (2009)
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Wang, S.; Huang, L.; Wicher, D.; Chi, C.; Xu, C.: Structure-function relationship of bifunctional scorpion toxin BmBKTx1. Acta biochimica et biophysica Sinica 40 (11), pp. 955 - 963 (2008)
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Wicher, D.; Schäfer, R.; Bauernfeind, R.; Stensmyr, M. C.; Heller, R.; Heinemann, S. H.; Hansson, B. S.: Drosophila odorant receptors are both ligand-gated and cyclic-nucleotide-activated cation channels. Nature 452 (7190), pp. 1007 - 1011 (2008)
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Dedos, S. G.; Wicher, D.; Kaltofen, S.; Birkenbeil, H.: Different Ca2+ signalling cascades manifested by Mastoparan in the prothoracic glands of the tobacco hornworm, Manduca sexta, and the silkworm, Bombyx mori. Archives of Insect Biochemistry and Physiology 65 (2), pp. 52 - 64 (2007)
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Wicher, D.: Metabolic regulation and behavior: how hunger produces arousal – an insect study. Endocrine, Metabolic & Immune Disorders - Drug Targets 7 (4), pp. 304 - 310 (2007)
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Wicher, D.; Derst, C.; Gautier, H.; Lapied, B.; Heinemann, S.; Agricola, H.-J.: The satiety signaling neuropeptide perisulfakinin inhibits the activity of central neurons promoting general activity. Frontiers in Cellular Neuroscience 1, 3 (2007)
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Wicher, D.: Metabolische Regulation und neuronale Aktivität: Wie Hunger mobil macht. Neuroforum 3 (06), pp. 228 - 229 (2006)
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Wicher, D.; Agricola, H. J.; Söhler, S.; Gundel, M.; Heinemann, S. H.; Wollweber, L.; Stengl, M.; Derst, C.: Differential receptor activation by cockroach adipokinetic hormones produces differential effects on ion currents, neuronal activity, and locomotion. Journal of Neurophysiology 95 (4), pp. 2314 - 2325 (2006)

Preprint (2)

Halty-deLeon, L.; Pal Mahadevan, V.; Hansson, B. S.; Wicher, D.: Response plasticity of Drosophila olfactory sensory neurons. (2021)
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