2008 |
15 | EE | Terry Elliott:
Temporal Dynamics of Rate-Based Synaptic Plasticity Rules in a Stochastic Model of Spike-Timing-Dependent Plasticity.
Neural Computation 20(9): 2253-2307 (2008) |
2007 |
14 | EE | Terry Elliott:
Intrinsic versus extrinsic influences in the development of neuronal maps.
Biological Cybernetics 96(1): 129-143 (2007) |
13 | EE | Peter A. Appleby,
Terry Elliott:
Multispike Interactions in a Stochastic Model of Spike-Timing-Dependent Plasticity.
Neural Computation 19(5): 1362-1399 (2007) |
2006 |
12 | EE | Peter A. Appleby,
Terry Elliott:
Stable Competitive Dynamics Emerge from Multispike Interactions in a Stochastic Model of Spike-Timing-Dependent Plasticity.
Neural Computation 18(10): 2414-2464 (2006) |
2005 |
11 | EE | Peter A. Appleby,
Terry Elliott:
Synaptic and Temporal Ensemble Interpretation of Spike-Timing-Dependent Plasticity.
Neural Computation 17(11): 2316-2336 (2005) |
2003 |
10 | EE | Terry Elliott:
An Analysis of Synaptic Normalization in a General Class of Hebbian Models.
Neural Computation 15(4): 937-963 (2003) |
9 | EE | Terry Elliott,
Nigel R. Shadbolt:
Developing a robot visual system using a biologically inspired model of neuronal development.
Robotics and Autonomous Systems 45(2): 111-130 (2003) |
2002 |
8 | EE | Terry Elliott,
Jörg Kramer:
Developing Topography and Ocular Dominance Using Two aVLSI Vision Sensors and a Neurotrophic Model of Plasticity.
NIPS 2002: 1131-1138 |
7 | EE | Terry Elliott,
Nigel R. Shadbolt:
Dissociating ocular dominance column development and ocular dominance plasticity: a neurotrophic model.
Biological Cybernetics 86(4): 281-292 (2002) |
6 | EE | Terry Elliott:
A spin-glass-like Lyapunov function for a neurotrophic model of neuronal development.
Biological Cybernetics 86(6): 473-481 (2002) |
5 | EE | Terry Elliott,
Jörg Kramer:
Coupling an aVLSI Neuromorphic Vision Chip to a Neurotrophic Model of Synaptic Plasticity: The Development of Topography.
Neural Computation 14(10): 2353-2370 (2002) |
4 | EE | Terry Elliott,
Nigel Shadbolt:
Multiplicative Synaptic Normalization and a Nonlinear Hebb Rule Underlie a Neurotrophic Model of Competitive Synaptic Plasticity.
Neural Computation 14(6): 1311-1322 (2002) |
2001 |
3 | EE | Terry Elliott,
Nigel R. Shadbolt:
Growth and repair: Instantiating a biologically inspired model of neuronal development on the Khepera robot.
Robotics and Autonomous Systems 36(4): 149-169 (2001) |
1998 |
2 | | Terry Elliott,
C. I. Howarth,
Nigel Shadbolt:
Axonal Processes and Neural Plasticity: A Reply.
Neural Computation 10(3): 549-554 (1998) |
1 | | Terry Elliott,
Nigel Shadbolt:
Competition for Neurotrophic Factors: Mathematical Analysis.
Neural Computation 10(8): 1939-1981 (1998) |