2007 |
37 | EE | Hecke Schrobsdorff,
J. Michael Herrmann,
Theo Geisel:
A feature-binding model with localized excitations.
Neurocomputing 70(10-12): 1706-1710 (2007) |
2005 |
36 | EE | Anna Levina,
J. Michael Herrmann,
Theo Geisel:
Dynamical Synapses Give Rise to a Power-Law Distribution of Neuronal Avalanches.
NIPS 2005 |
35 | EE | B. Naundorf,
Theo Geisel,
Fred Wolf:
Action Potential Onset Dynamics and the Response Speed of Neuronal Populations.
Journal of Computational Neuroscience 18(3): 297-309 (2005) |
34 | EE | Abigail Morrison,
Carsten Mehring,
Theo Geisel,
Ad Aertsen,
Markus Diesmann:
Advancing the Boundaries of High-Connectivity Network Simulation with Distributed Computing.
Neural Computation 17(8): 1776-1801 (2005) |
33 | EE | B. Naundorf,
Theo Geisel,
Fred Wolf:
Dynamical response properties of a canonical model for type-I membranes.
Neurocomputing 65-66: 421-428 (2005) |
32 | EE | J. Michael Herrmann,
Hecke Schrobsdorff,
Theo Geisel:
Localized activations in a simple neural field model.
Neurocomputing 65-66: 679-684 (2005) |
2004 |
31 | EE | Tom Tetzlaff,
Abigail Morrison,
Theo Geisel,
Markus Diesmann:
Consequences of realistic network size on the stability of embedded synfire chains.
Neurocomputing 58-60: 117-121 (2004) |
2003 |
30 | EE | Norbert Michael Mayer,
J. Michael Herrmann,
Theo Geisel:
Shaping of Receptive Fields in the Visual Cortex During Retinal Maturation.
Journal of Computational Neuroscience 15(3): 307-320 (2003) |
2002 |
29 | EE | Silke Dodel,
J. Michael Herrmann,
Theo Geisel:
Functional connectivity by cross-correlation clustering.
Neurocomputing 44-46: 1065-1070 (2002) |
28 | EE | Dmitri Bibitchkov,
J. Michael Herrmann,
Theo Geisel:
Effects of short-time plasticity on the associative memory.
Neurocomputing 44-46: 329-335 (2002) |
27 | EE | Norbert Michael Mayer,
J. Michael Herrmann,
Theo Geisel:
Curved feature metrics in models of visual cortex.
Neurocomputing 44-46: 533-539 (2002) |
26 | EE | Tom Tetzlaff,
Theo Geisel,
Markus Diesmann:
The ground state of cortical feed-forward networks.
Neurocomputing 44-46: 673-678 (2002) |
2001 |
25 | EE | Silke Dodel,
J. Michael Herrmann,
Theo Geisel:
Stimulus-Independent Data Analysis for fMRI.
Emergent Neural Computational Architectures Based on Neuroscience 2001: 39-53 |
24 | EE | Matthias Kaschube,
Fred Wolf,
Theo Geisel,
Siegrid Löwel:
The prevalence of colinear contours in the real world.
Neurocomputing 38-40: 1335-1339 (2001) |
23 | EE | Norbert Michael Mayer,
J. Michael Herrmann,
Theo Geisel:
Signatures of natural image statistics in cortical simple cell receptive fields.
Neurocomputing 38-40: 279-284 (2001) |
22 | EE | Hans E. Plesser,
Theo Geisel:
Signal processing by means of noise.
Neurocomputing 38-40: 307-312 (2001) |
2000 |
21 | EE | Dmitri Bibitchkov,
J. Michael Herrmann,
Theo Geisel:
Synaptic Depression in Associative Memory Networks.
IJCNN (5) 2000: 50-58 |
20 | EE | Norbert Michael Mayer,
J. Michael Herrmann,
Theo Geisel:
Structure Formation in Visual Cortex Based on a Curved Feature Space.
IJCNN (6) 2000: 153-158 |
19 | EE | Matthias Kaschube,
Fred Wolf,
Theo Geisel,
Siegrid Löwel:
Quantifying the variability of patterns of orientation domains in the visual cortex of cats.
Neurocomputing 32-33: 415-423 (2000) |
18 | EE | Norbert Michael Mayer,
J. Michael Herrmann,
Theo Geisel:
Retinotopy and spatial phase in topographic maps.
Neurocomputing 32-33: 447-452 (2000) |
17 | EE | Dirk Brockmann,
Theo Geisel:
The ecology of gaze shifts.
Neurocomputing 32-33: 643-650 (2000) |
16 | EE | Silke Dodel,
J. Michael Herrmann,
Theo Geisel:
Localization of brain activity - blind separation for fMRI data.
Neurocomputing 32-33: 701-708 (2000) |
15 | EE | J. Michael Herrmann,
Klaus Pawelzik,
Theo Geisel:
Learning predictive representations.
Neurocomputing 32-33: 785-791 (2000) |
1999 |
14 | | J. Michael Herrmann,
Klaus Pawelzik,
Theo Geisel:
Self-Localization of Autonomous Robots by Hidden Representations.
Auton. Robots 7(1): 31-40 (1999) |
13 | EE | Matthias Bethge,
Klaus Pawelzik,
Theo Geisel:
Brief pauses as signals for degressing synapses.
Neurocomputing 26-27: 1-7 (1999) |
12 | EE | Hans E. Plesser,
Theo Geisel:
Bandpass properties of integrate-fire neurons.
Neurocomputing 26-27: 229-235 (1999) |
11 | EE | Udo Ernst,
Klaus Pawelzik,
Fred Wolf,
Theo Geisel:
Theory of non-classical receptive field phenomena in the visual cortex.
Neurocomputing 26-27: 367-374 (1999) |
1998 |
10 | | Maximilian Riesenhuber,
Hans-Ulrich Bauer,
Dirk Brockmann,
Theo Geisel:
Breaking Rotational Symmetry in a Self-Organizing Map-Model for Orientation Map Development.
Neural Computation 10(3): 717-730 (1998) |
1997 |
9 | | Fred Wolf,
Theo Geisel:
Must Pinwheels Move During Visual Development?
ICANN 1997: 195-200 |
8 | | Dirk Brockmann,
Hans-Ulrich Bauer,
Maximilian Riesenhuber,
Theo Geisel:
SOM-Model for the Development of Oriented Receptive Fields and Orientation Maps from Non-oriented ON-center OFF-center Inputs.
ICANN 1997: 207-212 |
7 | | Udo Ernst,
Klaus Pawelzik,
Fred Wolf,
Theo Geisel:
Geometry of Orientation Preference Map Determines Nonclassical Receptive Field Properties.
ICANN 1997: 231-236 |
1996 |
6 | | Maximilian Riesenhuber,
Hans-Ulrich Bauer,
Theo Geisel:
Analyzing the Formation of Structure in High-Dimensional Self-Organizing Maps Reveals Differences to Feature Map Models.
ICANN 1996: 409-414 |
5 | | Klaus Pawelzik,
Hans-Ulrich Bauer,
Fred Wolf,
Theo Geisel:
Precise Restoration of Cortical Orientation Maps Explained by Hebbian Dynamics of Geniculocortical Connections.
ICANN 1996: 415-419 |
4 | EE | Klaus Pawelzik,
Udo Ernst,
Fred Wolf,
Theo Geisel:
Orientation Contrast Sensitivity from Long-range Interactions in Visual Cortex.
NIPS 1996: 90-96 |
1992 |
3 | EE | Klaus Pawelzik,
Hans-Ulrich Bauer,
J. Deppisch,
Theo Geisel:
How Oscillatory Neuronal Responses Reflect Bistability and Switching of the Hidden Assembly Dynamics.
NIPS 1992: 977-984 |
1991 |
2 | EE | Hans-Ulrich Bauer,
Klaus Pawelzik,
Theo Geisel:
A Topographic Product for the Optimization of Self-Organizing Feature Maps.
NIPS 1991: 1141-1147 |
1989 |
1 | EE | Hans-Ulrich Bauer,
Theo Geisel:
Motion Detection and Direction Detection in Local Neural Nets.
Int. J. Neural Syst. 1(2): 187-192 (1989) |