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Normal vision can compensate for the loss of the circadian clock, , and . Proc R Soc Lond B: Biol Sci, 282 (1815): 20151846 (2015)A neural network underlying circadian entrainment and photoperiodic adjustment of sleep and activity in Drosophila, , , , , , , , , and 1 other author(s). J Neurosci, 36 (35): 9084-9096 (2016)A new Rhodopsin influences light-dependent daily activity patterns of fruit flies, , , , , , , and . Journal of biological rhythms, 32 (5): 406--422 (2017)Twilight dominates over moonlight in adjusting Drosophila’s activity pattern, , , and . J Biol Rhythms, 30 (2): 117-128 (2015)PMID: 25838418.Cryptochrome interacts with actin and enhances eye-mediated light sensitivity of the circadian clock in Drosophila melanogaster, , , , , , and . Frontiers in Molecular Neuroscience, (2018)Fly cryptochrome and the visual system, , , , , , , , , and 2 other author(s). Proc Natl Acad Sci, 110 (15): 6163-6168 (2013)Light-mediated circuit switching in the Drosophila neuronal clock network, , , , , , and . Current Biology, 29 (19): 3266-3276.e3 (2019)A Functional Clock Within the Main Morning and Evening Neurons of D. melanogaster Is Not Sufficient for Wild-Type Locomotor Activity Under Changing Day Length, , , , , and . Frontiers in Physiology, (2020)Photic entrainment in Drosophila assessed by locomotor activity recordings, and . Methods Enzymol, (2015)Adaptation of circadian neuronal network to photoperiod in high-latitude European Drosophilids, , , , , and . CURR BIOL, (2017)