Publications

Schnaitmann, C., Pagni, M., Meyer, P.B., Steinhoff, L., Oberhauser, V., and Reiff, D.F. (2024). Horizontal-cell like Dm9 neurons in Drosophila modulate photoreceptor output to supply multiple functions in early visual processing. Front. Mol. Neurosci. 17.

Cornean, J., Molina-Obando, S., Gür, B., Bast, A., Ramos-Traslosheros, G., Chojetzki, J., Lörsch, L., Ioannidou, M., Taneja, R., Schnaitmann, C., and Silies, M. (2024).  Heterogeneity of Synaptic Connectivity in the Fly Visual System. Nature Communications 15, 1570.

Pagni, M., Haikala, V., Oberhauser, V., Meyer, P., Reiff, D.F., and Schnaitmann, C. (2021). Interaction of ‘chromatic’ and ‘achromatic’ circuits in color opponent processing. Current Biology 31, 1687-1698.e4

Schnaitmann, C., Pagni, M., and Reiff, D.F. (2020). Color vision in insects: insights from Drosophila. J Comp Physiol A 206, 183–198. (Our Review received the Readers’ Choice Award 2022)

Schnaitmann, C., Haikala, V., Abraham, E., Oberhauser, V., Thestrup, T., Griesbeck, O., and Reiff, D.F. (2018). Color Processing in the Early Visual System of Drosophila. Cell 172, 318–330.

Aso, Y., Sitaraman, D., Ichinose, T., Kaun, K. R., Vogt, K., Belliart-Guérin, G., Plaçais, P.-Y., Robie, A. A., Yamagata, N., Schnaitmann, C., Rowell, W.J., Johnston, R.M., Ngo, T.-T.B., Chen, N., Korff, W., Nitabach, M.N., Heberlein, U., Preat, T., Branson, K.M., Tanimoto, H., Rubin, G.M. (2014). Mushroom body output neurons encode valence and guide memory-based action selection in Drosophila. eLife, e04580.

Vogt, K.*, Schnaitmann, C.*, Dylla, K. V., Knapek, S., Aso, Y., Rubin, G. M., and Tanimoto, H. (2014). Shared mushroom body circuits underlie visual and olfactory memories in Drosophila. eLife, e02395. *equal contribution

Schnaitmann, C., Garbers, C., Wachtler, T., and Tanimoto, H. (2013). Colour discrimination with broadband photoreceptors. Current Biology 23, 2375–2382.

Schnaitmann, C., Vogt, K., Triphan, T., Tanimoto, H. (2010). Appetitive and aversive visual learning in freely moving Drosophila. Front. Behav. Neurosci. 4, 10.