Publikationen Senthilan
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Contribution of cryptochromes and photolyases for insect life under sunlight. . In Journal of Comparative Physiology A, 209(3), pp. 373–389. 2023.
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Contribution of cryptochromes and photolyases for insect life under sunlight. . In Journal of Comparative Physiology A. 2023.
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The Gain and Loss of {Cryptochrome/Photolyase} Family Members during Evolution. . In Genes (Basel), 13(9). 2022.
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The Gain and Loss of Cryptochrome/Photolyase Family Members during Evolution. . In Genes, 13(9). 2022.
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Dopamine signaling in wake promoting clock neurons is not required for the normal regulation of sleep in Drosophila. . In Journal of Neuroscience. Society for Neuroscience, 2020.
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Role of Rhodopsins as Circadian Photoreceptors in the Drosophila melanogaster. . In Biology, 8(1), p. 6. 2019.
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A new Rhodopsin influences light-dependent daily activity patterns of fruit flies. . In Journal of biological rhythms, 32(5), pp. 406–422. 2017.
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Drosophila Rhodopsin 7 can partially replace the structural role of Rhodopsin 1, but not its physiological function. . In Journal of Comparative Physiology A, pp. 1–11. 2017.
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Rhodopsin 7--The unusual Rhodopsin in Drosophila. . In PeerJ, 4, p. e2427. 2016.
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The ion transport peptide is a new functional clock neuropeptide in the fruit fly Drosophila melanogaster. . In J Neurosci, 34(29), pp. 9522–9536. 2014.
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The MAP kinase p38 is part of Drosophila melanogaster’s circadian clock. . In PLoS genetics, 10(8), p. e1004565. 2014.
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The circadian clock network in the brain of different Drosophila species. . In J Comp Neurol, 521(2), pp. 367–388. 2013.
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Drosophila auditory organ genes and genetic hearing defects. . In Cell, 150(5), pp. 1042–1054. 2012.
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Antennal hearing in insects – New findings, new questions. . In Hear Res, 273(1–2), pp. 7–13. 2011.
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Using Drosophila for studying fundamental processes in hearing. . In Integr Comp Biol, 49(6), pp. 674–680. 2009.
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