Michael Schmuker
Affiliations: | Freie Universität Berlin, Berlin, Germany |
Area:
Olfactory System, ModellingWebsite:
http://www.biologie.fu-berlin.de/neuroinformatik/people/schmuker/index.htmlGoogle:
"Michael Schmuker"Mean distance: 14.66 (cluster 17) | S | N | B | C | P |
Parents
Sign in to add mentorAd Aertsen | research assistant | 1998-2003 | Albert Ludwigs University Freiburg | |
Thomas Wachtler | research assistant | 2000-2003 | Albert Ludwigs University Freiburg | |
Randolf Menzel | grad student | 2007- | FU Berlin | |
Marc-Oliver Gewaltig | grad student | 2002-2003 | Honda Research Institute | |
(Diploma Thesis) | ||||
Gisbert Schneider | grad student | 2003-2006 | Goethe-Universität Frankfurt | |
(PhD) |
Children
Sign in to add traineeJan Soelter | grad student | 2009- | FU Berlin |
Benjamin Auffarth | post-doc | FU Berlin |
Collaborators
Sign in to add collaboratorMartin Paul Nawrot | collaborator | 2007- | FU Berlin |
Hartwig Spors | collaborator | 2008- | FU Berlin |
Marien de Bruijne | collaborator | 2004-2006 | FU Berlin |
BETA: Related publications
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Publications
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Burton SD, Brown A, Eiting TP, et al. (2022) Mapping odorant sensitivities reveals a sparse but structured representation of olfactory chemical space by sensory input to the mouse olfactory bulb. Elife. 11 |
Crimaldi J, Lei H, Schaefer A, et al. (2021) Correction to: Active sensing in a dynamic olfactory world. Journal of Computational Neuroscience |
Crimaldi J, Lei H, Schaefer A, et al. (2021) Active sensing in a dynamic olfactory world. Journal of Computational Neuroscience |
Schmuker M, Kupper R, Aertsen A, et al. (2021) Feed-forward and noise-tolerant detection of feature homogeneity in spiking networks with a latency code. Biological Cybernetics. 115: 161-176 |
Drix D, Hafner VV, Schmuker M. (2020) Sparse coding with a somato-dendritic rule. Neural Networks : the Official Journal of the International Neural Network Society. 131: 37-49 |
Soelter J, Schumacher J, Spors H, et al. (2020) Computational exploration of molecular receptive fields in the olfactory bulb reveals a glomerulus-centric chemical map. Scientific Reports. 10: 77 |
Newton AJH, Seidenstein AH, McDougal RA, et al. (2017) 26th Annual Computational Neuroscience Meeting (CNS*2017): Part 3 Bmc Neuroscience. 18 |
Lungu I, Riehle A, Nawrot MP, et al. (2017) Predicting voluntary movements from motor cortical activity with neuromorphic hardware Ibm Journal of Research and Development. 61: 5:1-5:12 |
Diamond A, Schmuker M, Berna AZ, et al. (2016) Classifying continuous, real-time e-nose sensor data using a bio-inspired spiking network modelled on the insect olfactory system. Bioinspiration & Biomimetics. 11: 026002 |
Soelter J, Schumacher J, Spors H, et al. (2015) Erratum to "Automatic segmentation of odour maps in the mouse olfactory bulb using regularized non-negative matrix factorization" [NeuroImage 98 (2014) 279-288]. Neuroimage. 107: 116 |