Ad Aertsen

Affiliations: 
Albert-Ludwigs-University Freiburg, Freiburg im Breisgau, Baden-Württemberg, Germany 
Area:
Computation & Theory
Website:
http://www.brainworks.uni-freiburg.de/
Google:
"Ad Aertsen"
Mean distance: 12.66 (cluster 17)
 
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Publications

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Rezaei H, Aertsen A, Kumar A, et al. (2020) Facilitating the propagation of spiking activity in feedforward networks by including feedback. Plos Computational Biology. 16: e1008033
Orkan Özcan O, Wang X, Binda F, et al. (2019) Differential Coding Strategies in Glutamatergic and Gabaergic Neurons in the Medial Cerebellar Nucleus. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Spreizer S, Aertsen A, Kumar A. (2019) From space to time: Spatial inhomogeneities lead to the emergence of spatiotemporal sequences in spiking neuronal networks. Plos Computational Biology. 15: e1007432
Filipovic M, Ketzef M, Reig R, et al. (2019) Direct Pathway Neurons in Mouse Dorsolateral Striatum In Vivo Receive Stronger Synaptic Input than Indirect Pathway Neurons. Journal of Neurophysiology
Hahn G, Ponce-Alvarez A, Deco G, et al. (2018) Portraits of communication in neuronal networks. Nature Reviews. Neuroscience
Glanz Iljina O, Derix J, Kaur R, et al. (2018) Real-life speech production and perception have a shared premotor-cortical substrate. Scientific Reports. 8: 8898
Mirzaei A, Kumar A, Leventhal D, et al. (2017) Sensorimotor processing in the basal ganglia leads to transient beta oscillations during behavior. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Spreizer S, Angelhuber M, Bahuguna J, et al. (2017) Activity Dynamics and Signal Representation in a Striatal Network Model with Distance-Dependent Connectivity. Eneuro. 4
Fiederer L, Lahr J, Vorwerk J, et al. (2016) Electrical Stimulation of the Human Cerebral Cortex by Extracranial Muscle Activity:Effect Quantification with Intracranial EEG and FEM Simulations. Ieee Transactions On Bio-Medical Engineering
Kremkow J, Perrinet LU, Monier C, et al. (2016) Push-Pull Receptive Field Organization and Synaptic Depression: Mechanisms for Reliably Encoding Naturalistic Stimuli in V1. Frontiers in Neural Circuits. 10: 37
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