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The nocturnal activity of fruit flies exposed to artificial moonlight is partly caused by direct light effects on the activity level that bypass the endogenous clock

, , , and . Chronobiol Int, 26 (2): 151-166 (2009)

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The fruit fly Drosophila melanogaster favors dim light and times its activity peaks to early dawn and late dusk, , , , , and . J Biol Rhythms, 22 (5): 387-399 (2007)Performance analysis of the CRMA protocol in high-speed networks, and . 23. University of Wuerzburg, (December 1990)DQDB subnetwork interconnection: A performance study, COST Technical Document, COST242TD(92)057. 9257. University of Wuerzburg, (December 1992)The nocturnal activity of fruit flies exposed to artificial moonlight is partly caused by direct light effects on the activity level that bypass the endogenous clock, , , and . Chronobiol Int, 26 (2): 151-166 (2009)Analysis of the IEEE 802.6 DQDB access protocol, and . Proc. 2nd Joint Workshop on High Speed Networks, Stuttgart, (September 1991)Performance aspects of a GFC protocol proporal, COST Technical Document, COST242TD(92)047. 9247. University of Wuerzburg, (September 1992)Slot-Reuse in High-Speed Communication Networks. EFOC&N'94, Heidelberg, Germany, (June 1994)A performance comparison of GFC protocol proporals, COST Technical Document, COST242TD(93)011. 9311. University of Wuerzburg, (April 1993)Preliminary performance results of ATMR as generic flow control protocol, COST Technical Document, COST242TD(92)029, , and . 9229. University of Wuerzburg, (April 1992)Leistungsbewertung von DQDB Zugriffsprotokollen in Kommunikationssystemen. University of Wuerzburg, (November 1990)