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1. Molecular circadian rhythms are robust in marine annelids lacking rhythmic behavior.

2. A Cryptochrome adopts distinct moon- and sunlight states and functions as sun- versus moonlight interpreter in monthly oscillator entrainment

3. The Nereid on the rise: Platynereis as a model system

4. Characterization of tmt-opsin2 in Medaka Fish Provides Insight Into the Interplay of Light and Temperature for Behavioral Regulation

5. Characterization of cephalic and non-cephalic sensory cell types provides insight into joint photo- and mechanoreceptor evolution

6. TMT-Opsins differentially modulate medaka brain function in a context-dependent manner.

7. Parents in science

8. A Go-type opsin mediates the shadow reflex in the annelid Platynereis dumerilii

9. Differential Impacts of the Head on Platynereis dumerilii Peripheral Circadian Rhythms

10. Combined transcriptome and proteome profiling reveals specific molecular brain signatures for sex, maturation and circalunar clock phase

11. Ciliary and rhabdomeric photoreceptor-cell circuits form a spectral depth gauge in marine zooplankton

12. An Overview of Monthly Rhythms and Clocks

13. Instrument design and protocol for the study of light controlled processes in aquatic organisms, and its application to examine the effect of infrared light on zebrafish.

14. Circadian and Circalunar Clock Interactions in a Marine Annelid

16. The first myriapod genome sequence reveals conservative arthropod gene content and genome organisation in the centipede Strigamia maritima.

17. Tools for gene-regulatory analyses in the marine annelid Platynereis dumerilii.

18. Co-expression of VAL- and TMT-opsins uncovers ancient photosensory interneurons and motorneurons in the vertebrate brain.

19. Conditional and specific cell ablation in the marine annelid Platynereis dumerilii.

20. A Fast And Versatile Method for Simultaneous HCR, Immunohistochemistry And Edu Labeling (SHInE)

21. Biological rhythms: Hormones under moon control

22. Rhythms and Clocks in Marine Organisms

23. SHInE - Simultaneous HCR, Immunohistochemistry, Nuclear staining and EdU v1

27. Behavioral rhythms are bad predictors of general organismal rhythmicity

31. Melanopsin elevates locomotor activity during the wake state of the diurnal zebrafish

32. Rhythms of behavior: are the times changin’?

33. Two light sensors decode moonlight versus sunlight to adjust a plastic circadian/circalunidian clock to moon phase

37. Author response: Characterization of cephalic and non-cephalic sensory cell types provides insight into joint photo- and mechanoreceptor evolution

38. Two light sensors decode moonlight versus sunlight to adjust a plastic circadian/circalunidian clock to moon phase

39. A Cryptochrome adopts distinct moon- and sunlight states and functions as sun- versus moonlight interpreter in monthly oscillator entrainment

41. Characterization of cephalic and non-cephalic sensory cell types provides insight into joint photo- and mechanoreceptor evolution

42. Seasonal variation in UVA light drives hormonal and behavioural changes in a marine annelid via a ciliary opsin

43. TMT-Opsins differentially modulate medaka brain function in a context-dependent manner

44. Seasonal variation in UVA light drives hormonal and behavioural changes in a marine annelid via a ciliary opsin

45. The Still Dark Side of the Moon: Molecular Mechanisms of Lunar-Controlled Rhythms and Clocks

46. Differential Impacts of the Head on Platynereis dumerilii Peripheral Circadian Rhythms

47. Differential impacts of the head onPlatynereis dumeriliiperipheral circadian rhythms

49. Parents in science

50. A Go-type opsin mediates the shadow reflex in the annelid Platynereis dumerilii

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