Andreas V. Herz

Affiliations: 
Institute for Theoretical Biology, Berlin, Berlin, Germany 
Area:
Audition
Website:
http://itb1.biologie.hu-berlin.de/~herz/
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"Andreas Herz"
Mean distance: 13.12 (cluster 17)
 
SNBCP
Cross-listing: CSD Tree

Collaborators

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Jonathan Paul Fry collaborator Babraham Institute (Physiology Academic Tree)
Li Zhaoping collaborator 1990-1991
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Publications

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Eberhardt F, Herz AVM, Häusler S. (2019) Tuft dendrites of pyramidal neurons operate as feedback-modulated functional subunits. Plos Computational Biology. 15: e1006757
Zirkelbach J, Stemmler M, Herz AVM. (2019) Anticipatory neural activity improves the decoding accuracy for dynamic head-direction signals. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Lüdke A, Raiser G, Nehrkorn J, et al. (2018) Corrigendum: Calcium in Kenyon Cell Somata as a Substrate for an Olfactory Sensory Memory in . Frontiers in Cellular Neuroscience. 12: 197
Pröll M, Häusler S, Herz AVM. (2018) Grid-cell activity on linear tracks indicates purely translational remapping of 2D firing patterns at movement turning points. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Lüdke A, Raiser G, Nehrkorn J, et al. (2018) Calcium in Kenyon Cell Somata as a Substrate for an Olfactory Sensory Memory in . Frontiers in Cellular Neuroscience. 12: 128
Stemmler M, Herz AVM. (2017) Spatial Cognition: Grid Cells Harbour Three Complementary Positional Codes. Current Biology : Cb. 27: R755-R758
Bywalez WG, Patirniche D, Rupprecht V, et al. (2016) Local Postsynaptic Voltage-Gated Sodium Channel Activation in Dendritic Spines of Olfactory Bulb Granule Cells. Neuron. 89: 1355
Stemmler M, Mathis A, Herz AV. (2015) Connecting multiple spatial scales to decode the population activity of grid cells. Science Advances. 1: e1500816
Nehrkorn J, Tanimoto H, Herz AV, et al. (2015) A model for non-monotonic intensity coding. Royal Society Open Science. 2: 150120
Mathis A, Stemmler MB, Herz AV. (2015) Probable nature of higher-dimensional symmetries underlying mammalian grid-cell activity patterns. Elife. 4
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