2008 |
18 | EE | Andreas Knoblauch:
Neural Associative Memory and the Willshaw--Palm Probability Distribution.
SIAM Journal of Applied Mathematics 69(1): 169-196 (2008) |
17 | EE | Andreas Knoblauch:
Closed-form Expressions for the Moments of the Binomial Probability Distribution.
SIAM Journal of Applied Mathematics 69(1): 197-204 (2008) |
2007 |
16 | EE | Rüdiger Kupper,
Andreas Knoblauch,
Marc-Oliver Gewaltig,
Ursula Körner,
Edgar Körner:
Simulations of signal flow in a functional model of the cortical column.
Neurocomputing 70(10-12): 1711-1716 (2007) |
15 | EE | Andreas Knoblauch,
Rüdiger Kupper,
Marc-Oliver Gewaltig,
Ursula Körner,
Edgar Körner:
A cell assembly based model for the cortical microcircuitry.
Neurocomputing 70(10-12): 1838-1842 (2007) |
2005 |
14 | EE | Heiner Markert,
Andreas Knoblauch,
Günther Palm:
Detecting Sequences and Understanding Language with Neural Associative Memories and Cell Assemblies.
Biomimetic Neural Learning for Intelligent Robots 2005: 107-117 |
13 | EE | Rebecca Fay,
Ulrich Kaufmann,
Andreas Knoblauch,
Heiner Markert,
Günther Palm:
Combining Visual Attention, Object Recognition and Associative Information Processing in a NeuroBotic System.
Biomimetic Neural Learning for Intelligent Robots 2005: 118-143 |
12 | EE | Andreas Knoblauch,
Friedemann Pulvermüller:
Sequence Detector Networks and Associative Learning of Grammatical Categories.
Biomimetic Neural Learning for Intelligent Robots 2005: 31-53 |
11 | EE | Andreas Knoblauch,
Heiner Markert,
Günther Palm:
An Associative Cortical Model of Language Understanding and Action Planning.
IWINAC (2) 2005: 405-414 |
10 | EE | Andreas Knoblauch:
Neural associative memory for brain modeling and information retrieval.
Inf. Process. Lett. 95(6): 537-544 (2005) |
9 | EE | Andreas Knoblauch:
Statistical implications of clipped Hebbian learning of cell assemblies.
Neurocomputing 65-66: 647-652 (2005) |
2004 |
8 | EE | Andreas Knoblauch,
Friedrich T. Sommer:
Spike-timing-dependent synaptic plasticity can form "zero lag links" for cortical oscillations.
Neurocomputing 58-60: 185-190 (2004) |
2003 |
7 | EE | Andreas Knoblauch:
Optimal Matrix Compression Yields Storage Capacity 1 for Binary Willshaw Associative Memory.
ICANN 2003: 325-332 |
6 | EE | Andreas Knoblauch,
Friedrich T. Sommer:
Synaptic plasticity, conduction delays, and inter-areal phase relations of spike activity in a model of reciprocally connected areas.
Neurocomputing 52-54: 301-306 (2003) |
2002 |
5 | EE | Andreas Knoblauch,
Günther Palm:
Scene segmentation by spike synchronization in reciprocally connected visual areas. I. Local effects of cortical feedback.
Biological Cybernetics 87(3): 151-167 (2002) |
4 | EE | Andreas Knoblauch,
Günther Palm:
Scene segmentation by spike synchronization in reciprocally connected visual areas. II. Global assemblies and synchronization on larger space and time scales.
Biological Cybernetics 87(3): 168-184 (2002) |
3 | EE | Andreas Knoblauch,
Thomas Wennekers,
Friedrich T. Sommer:
Is voltage-dependent synaptic transmission in NMDA receptors a robust mechanism for working memory?
Neurocomputing 44-46: 19-24 (2002) |
2001 |
2 | EE | Andreas Knoblauch,
Günther Palm:
Spiking Associative Memory and Scene Segmentation by Synchronization of Cortical Activity.
Emergent Neural Computational Architectures Based on Neuroscience 2001: 407-427 |
1 | EE | Andreas Knoblauch,
Günther Palm:
Pattern separation and synchronization in spiking associative memories and visual areas.
Neural Networks 14(6-7): 763-780 (2001) |