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Welz, P. - S., Zinna, V. M., Symeonidi, A., Koronowski, K. B., Kinouchi, K., Smith, J. G., et al. (2019). BMAL1-Driven Tissue Clocks Respond Independently to Light to Maintain Homeostasis. Cell, 177(6), 1436–1447.e12.
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Touitou, Y., Reinberg, A., & Touitou, D. (2017). Association between light at night, melatonin secretion, sleep deprivation, and the internal clock: Health impacts and mechanisms of circadian disruption. Life Sci, 173, 94–106.
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Kienast, F., & Weiss, M. (2019). Wie Lichtemissionen den Schweizer Wald seit 1992 erhellen. Schweizerische Zeitschrift fur Forstwesen, 170(1), 18–23.
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Blagonravov, M. L., Bryk, A. A., Medvedeva, E. V., Goryachev, V. A., Chibisov, S. M., Kurlaeva, A. O., et al. (2019). Structure of Rhythms of Blood Pressure, Heart Rate, Excretion of Electrolytes, and Secretion of Melatonin in Normotensive and Spontaneously Hypertensive Rats Maintained under Conditions of Prolonged Daylight Duration. Bull Exp Biol Med, 168(1), 18–23.
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Desouhant, E., Gomes, E., Mondy, N., & Amat, I. (2019). Mechanistic, ecological, and evolutionary consequences of artificial light at night for insects: review and prospective. Entomol Exp Appl, 167(1), 37–58.
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