In: Molecular Imaging and Biology, 2015, vol. 17, no. 5, p. 704-713
|
In: European Archives of Oto-Rhino-Laryngology, 2015, vol. 272, no. 7, p. 1651-1658
|
In: European Radiology, 2015, vol. 25, no. 11, p. 3398-3404
|
In: Biomedical Engineering / Biomedizinische Technik, 2017, vol. 62, no. 6, p. 557-563
|
In: Interactive CardioVascular and Thoracic Surgery, 2018, vol. 27, no. 1, p. 108-115
|
In: Clinical Oral Investigations, 2015, vol. 19, no. 7, p. 1611-1618
|
In: Interactive CardioVascular and Thoracic Surgery, 2017, vol. 24, no. 2, p. 173-180
|
In: SLEEP, 2016, vol. 40, no. 3, p. -
|
In: Cellular and Molecular Bioengineering, 2015, vol. 8, no. 2, p. 258-266
|
In: Scientific Reports, 2020, vol. 10, no. 1, p. 2752
Organisms possess an endogenous molecular clock which enables them to adapt to environmental rhythms and to synchronize their metabolism and behavior accordingly. Circadian rhythms govern daily oscillations in numerous physiological processes, and the underlying molecular components have been extensively described from fruit flies to mammals. Drosophila larvae have relatively simple nervous...
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