Publications
Ongoing Work
- Negri, F., Luboeinski, J., Tetzlaff, C., Fauth, M. (2025) The synaptic tag as an emergent biophysical state depending on the synaptic actin network and the postsynaptic density. BioRxiv
Peer-reviewed Journal Publications
- Thomas, M., Bogaciu, C.A., Rizzoli, S.O., Fauth, M. (2025) The stable pool of actin as synaptic tag. Communications Biology 8(1):1065.
- Reshetniak, S., Bogaciu, C.A., Bonn, S., Brose, N., Cooper, B.H., D'Este, E., Fauth, M., Fernández-Busnadiego, R., Fiosins, M., Fischer, A., Georgiev, S.V., Jakobs, S., Klumpp, S., Köster, S., Lange, F., Lipstein, N., Macarrón Palacios, V., Milovanovic, D., Moser, T., Müller, M., Opazo, F., Outeiro, T.F., Pape, C., Priesemann, V., Rehling, P., Salditt, T., Schlüter, O., Simeth-Crespi, N., Steinem, C., Tchumatchenko, T., Tetzlaff, C., Tirard, M., Urlaub, H., Wichmann, C., Wolf, F., and Rizzoli, S.O. (2025). The synaptic vesicle cluster as a controller of pre- and postsynaptic structure and function. Journal of Physiology 603(20):5935-5964.
- Jauch, J., Becker, M., Tetzlaff, C., Fauth, M. (2024), Differences in the consolidation by spontaneous and evoked ripples in the presence of active dendrites, PLoS Computational Biology, 20(6): e1012218
- Braun, J.-M.*, Fauth M.*, Berger M., Huang N.S., Simeoni E., Gaeta E., Rodrigues do Carmo R., Garcìa-Betances R., Arredondo Waldmeyer M.T., Gail A., Larsen J.C., Manoonpong P., Tetzlaff T., Wörgötter F. (2024). A Brain Machine Interface Framework for Exploring Proactive Control of Smart Environments. Nature Scientific Reports, 14, 11054.
- Miner, D.; Wörgötter, F.; Tetzlaff, C.; Fauth, M. (2021). Self-organized structuring of recurrent neuronal networks for reliable information transmission. Biology, 10,577.
- Bonilla-Quintana, M., Wörgötter, F., D’Este, E., Tetzlaff, C., Fauth, M. (2021). Reproducing asymmetrical spine shape fluctuations in a model of actin dynamics predicts self-organized criticality. Nature Scientific Reports, 11, 4012.
- Bonilla-Quintana, M., Wörgötter, F., Tetzlaff, C., Fauth, M. (2020). Modeling the shape of synaptic spines by their actin dynamics. Front. Synaptic Neurosci., 12:9.
- Fauth, M., van Rossum, M.C. (2019). Self-organized reactivation maintains and reinforces memories despite synaptic turnover. eLife, 2019; 8:e43717
- Lüddecke, T., Agostini, A. Fauth, M., Tamosiunaite, M., Wörgötter, F. (2019). Distributional semantics of objects in visual scenes in comparison to text. Artificial Intelligence, Volume 274, p. 44-65
- Fauth, M. and Tetzlaff, C. (2016). Opposing effects of neuronal activity on structural plasticity. Frontiers in Neuroanatomy, 10:75 IF: 3.267
- Fauth, M., Wörgötter, F., and Tetzlaff, C. (2015). Formation and maintenance of robust long-term information storage in the presence of synaptic turnover. PLoS Computational Biology, 11(12):e1004684
- Fauth, M., Wörgötter, F., and Tetzlaff, C. (2015). The formation of multi-synaptic connections by the interaction of synaptic and structural plasticity and their functional consequences. PLoS Computational Biology, 11(1):e1004031 .
- Nair, C., Junghans, A. R., Erhard, M., Bemmerer, D., Beyer, R., Crespo, P., Grosse, E., Fauth, M., Kosev, K., Rusev, G., Schilling, K. D., Schwengner, R., and Wagner, A. (2008). Photodisintegration studies on p-nuclei: the case of Mo and Sm isotopes. Journal of Physics G: Nucl. Part. Phys., 35(014036)
Book Chapters
- Fauth, M.; Wörgötter, F. and Tetzlaff, C. (2017). Long-term information storage by the interaction of synaptic and structural plasticity. In: van Ooyen A., Butz-Ostendorf M. (Editors): The rewiring brain: A computational approach to structural plasticity in the adult brain. Academic Press, p. 343-360
Contributed and InvitedConference Talks
- CNS Meeting 2025 Florence: "LTP-induced changes in spine geometry and actin dynamics on the timescale of the synaptic tag." Thomas, M., Bogaciu, C., Rizzoli, S.O., Fauth, M.
- Bernstein Conference 2024: "Stable Function froma an unstable brain", Fauth, M.
- COSYNE Meeting 2019 "Self-organized reactivation maintains and reinforces memories stored in Hebbian cell assemblies despite synaptic turnover." Fauth, M. and van Rossum, M.C.
- CNS Meeting 2015 in Prague: "Collective information storage in multiple synapses enables fast learning and slow forgetting", Fauth, M., Wörgötter, F., Tetzlaff, C.