1. 2020
  2. 2019
  3. 2018
  4. 2017
  5. Laturney, M. (Author). (2017). The dark side of love. Web publication/site, TheScienceBreaker. https://doi.org/10.25250/thescbr.brk034
  6. 2016
  7. Laturney, M. E. (2016). The second sex: Functions and mechanisms of sperm manipulation in female Drosophila melanogaster. [Groningen]: Rijksuniversiteit Groningen.
  8. 2015
  9. 2014
  10. Laturney, M., & Billeter, J-C. (2014). Neurogenetics of female reproductive behaviors in Drosophila melanogaster. In T. Friedmann, JC. Dunlap, & SF. Goodwin (Eds.), Advances in Genetics (Vol. 85, pp. 1-108). (Advances in Genetics; Vol. 85). SAN DIEGO: Academic Press. https://doi.org/10.1016/B978-0-12-800271-1.00001-9
  11. Billeter, J-C., Gorter, J., Jagadeesh, S., Gahr, C., & Levine, J. D. (2014). The nutritional and hedonic value of food modulates mating frequency and progeny production in Drosophila melanogaster females. In Antenna, Bulletin of the Royal Entomological Society: ECE Special Edition (pp. 109-109)
  12. 2013
  13. 2012
  14. 2011
  15. Wang, L., Han, X., Mehren, J., Hiroi, M., Billeter, J-C., Miyamoto, T., ... Anderson, D. J. (2011). Hierarchical chemosensory regulation of male-male social interactions in Drosophila. Nature neuroscience, 14(6), 757-62. https://doi.org/10.1038/nn.2800
  16. 2008
  17. Krupp, J. J., Kent, C., Billeter, J-C., Azanchi, R., So, A. K-C., Schonfeld, J. A., ... Levine, J. D. (2008). Social experience modifies pheromone expression and mating behavior in male Drosophila melanogaster. Current Biology, 18(18), 1373-83. https://doi.org/10.1016/j.cub.2008.07.089
  18. 2007
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  20. Billeter, J-C., Villella, A., Allendorfer, J. B., Dornan, A. J., Richardson, M., Gailey, D. A., & Goodwin, S. F. (2006). Isoform-specific control of male neuronal differentiation and behavior in Drosophila by the fruitless gene. Current Biology, 16(11), 1063-76. https://doi.org/10.1016/j.cub.2006.04.039
  21. 2004
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  23. Song, H-J., Billeter, J-C., Reynaud, E., Carlo, T., Spana, E. P., Perrimon, N., ... Taylor, B. J. (2002). The fruitless gene is required for the proper formation of axonal tracts in the embryonic central nervous system of Drosophila. Genetics, 162(4), 1703-24.

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