Marc Timme
Affiliations: | Technische Universität Dresden, Dresden, Sachsen, Germany |
Website:
https://www.uni-goettingen.de/en/58047.htmlGoogle:
"Marc Timme"Bio:
http://www.genealogy.math.ndsu.nodak.edu/id.php?id=160864
http://ediss.uni-goettingen.de/handle/11858/00-1735-0000-0006-B575-5
Mean distance: 16.55 (cluster 17)
Parents
Sign in to add mentorTheo Geisel | grad student | 2002 | Universität Göttingen | |
(Collective Dynamics in Networks of Pulse-Coupled Oscillators) |
Children
Sign in to add traineeRaoul-Martin Memmesheimer | grad student | Max Planck Institute for Dynamics and Self-Organization, Göttingen, Germany | |
Humberto Sandmann | grad student | 2009-2010 | Max Planck Institute for Dynamics and Self Organisation |
Sakyasingha Dasgupta | grad student | 2011-2014 | Bernstein Center for Computational Neuroscience, Göttingen |
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Publications
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Lee S, Braun L, Bönisch F, et al. (2024) Complexified synchrony. Chaos (Woodbury, N.Y.). 34 |
Börner G, Schittler Neves F, Timme M. (2023) Designing spiking neural networks for robust and reconfigurable computation. Chaos (Woodbury, N.Y.). 33 |
Steinacker C, Storch DM, Timme M, et al. (2022) Demand-driven design of bicycle infrastructure networks for improved urban bikeability. Nature Computational Science. 2: 655-664 |
Schittler Neves F, Timme M. (2021) Decoding complex state space trajectories for neural computing. Chaos (Woodbury, N.Y.). 31: 123105 |
Sirio Carmantini G, Schittler Neves F, Timme M, et al. (2021) Stochastic facilitation in heteroclinic communication channels. Chaos (Woodbury, N.Y.). 31: 093130 |
Molkenthin N, Schröder M, Timme M. (2020) Scaling Laws of Collective Ride-Sharing Dynamics. Physical Review Letters. 125: 248302 |
Zhang X, Witthaut D, Timme M. (2020) Topological Determinants of Perturbation Spreading in Networks. Physical Review Letters. 125: 218301 |
Zhang X, Ma C, Timme M. (2020) Vulnerability in dynamically driven oscillatory networks and power grids [Chaos 30, 063111 (2020)]. Chaos (Woodbury, N.Y.). 30: 079901 |
Zhang X, Ma C, Timme M. (2020) Vulnerability in dynamically driven oscillatory networks and power grids. Chaos (Woodbury, N.Y.). 30: 063111 |
Molkenthin N, Mühle S, Mey ASJS, et al. (2020) Self-organized emergence of folded protein-like network structures from geometric constraints. Plos One. 15: e0229230 |