 | 2008 |
| 10 |  | Dylan G. Allegretti,
Garrett T. Kenyon,
William C. Priedhorsky:
Cellular Automata for Distributed Sensor Networks.
IJHPCA 22(2): 167-176 (2008) |
| 2007 |
| 9 |  | Jeremy A. Miller,
Garrett T. Kenyon:
Extracting Number-Selective Responses from Coherent Oscillations in a Computer Model.
Neural Computation 19(7): 1766-1797 (2007) |
| 2006 |
| 8 |  | Greg J. Stephens,
Sergio Neuenschwander,
John S. George,
Wolf Singer,
Garrett T. Kenyon:
See globally, spike locally: oscillations in a retinal model encode large visual features.
Biological Cybernetics 95(4): 327-348 (2006) |
| 2005 |
| 7 |  | John M. Galbraith,
Garrett T. Kenyon,
Richard W. Ziolkowski:
Time-to-Collision Estimation from Motion Based on Primate Visual Processing.
IEEE Trans. Pattern Anal. Mach. Intell. 27(8): 1279-1291 (2005) |
| 2004 |
| 6 |  | Mark Flynn,
Henry D. I. Abarbanel,
Garrett T. Kenyon:
Neurally-Based Algorithms for Image Processing.
AIPR 2004: 79-85 |
| 5 |  | Garrett T. Kenyon,
James Theiler,
John S. George,
Bryan J. Travis,
David W. Marshak:
Correlated Firing Improves Stimulus Discrimination in a Retinal Model.
Neural Computation 16(11): 2261-2291 (2004) |
| 4 |  | Garrett T. Kenyon,
Dan Hill,
James Theiler,
John S. George,
David W. Marshak:
A theory of the Benham Top based on center-surround interactions in the parvocellular pathway.
Neural Networks 17(5-6): 773-786 (2004) |
| 2003 |
| 3 |  | Garrett T. Kenyon,
Bryan J. Travis,
David W. Marshak:
Role of synaptic feedback and intrinsic voltage-gated currents in shaping cone light responses.
Neurocomputing 52-54: 125-133 (2003) |
| 1998 |
| 2 |  | Garrett T. Kenyon,
Javier F. Medina,
Michael D. Mauk:
A Mathematical Model of the Cerebellar-Olivary System I: Self-Regulating Equilibrium of Climbing Fiber Activity.
Journal of Computational Neuroscience 5(1): 17-33 (1998) |
| 1 |  | Garrett T. Kenyon,
Javier F. Medina,
Michael D. Mauk:
A Mathematical Model of the Cerebellar-Olivary System II: Motor Adaptation Through Systematic Disruption of Climbing Fiber Equilibrium.
Journal of Computational Neuroscience 5(1): 71-90 (1998) |