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Cerebral Cortex (New York, N.Y. : 1991)
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October 28, 2005
The cingulate as a catalyst region for global dysfunction: a dynamical modelling paradigm
Dina M Kronhaus, David J Willshaw
Development (Cambridge, England)
|
October 31, 2002
Influence of cell fate mechanisms upon retinal mosaic formation: a modelling study
Stephen J Eglen, David J Willshaw
Network (Bristol, England)
|
March 25, 2008
Asynchronous inputs and NMDA conductances predict excitatory responses in the cortical-cA1 pathway of the hippocampus
Kit D Longden, David J Willshaw
Eneuro
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October 18, 2023
Reanalysis of EphA3 Knock-In Double Maps in Mouse Suggests That Stochasticity in Topographic Map Formation Acts at the Retina Rather than between Competing Mechanisms at the Colliculus
David J Willshaw, Nicholas M Gale
Frontiers in Neuroinformatics
|
January 31, 2014
morphforge: a toolbox for simulating small networks of biologically detailed neurons in Python
Michael J Hull, David J Willshaw
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience
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January 31, 2014
Analysis of local and global topographic order in mouse retinocollicular maps
David J Willshaw, David C Sterratt, Adrianna Teriakidis
The Journal of Comparative Neurology
|
March 21, 2012
Prevalence and elimination of sibling neurite convergence in motor units supplying neonatal and adult mouse skeletal muscle
Adrianna Teriakidis, David J Willshaw, Richard R Ribchester
IEEE Transactions on Biomedical Circuits and Systems
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July 16, 2013
Spike-timing-dependent plasticity with weight dependence evoked from physical constraints
Simeon A Bamford, Alan F Murray, David J Willshaw
Neural Networks : the Official Journal of the International Neural Network Society
|
February 24, 2010
Synaptic rewiring for topographic mapping and receptive field development
Simeon A Bamford, Alan F Murray, David J Willshaw
IEEE Transactions on Neural Networks
|
January 15, 2010
Large developing receptive fields using a distributed and locally reprogrammable address-event receiver
Simeon A Bamford, Alan F Murray, David J Willshaw
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of 2
Search research articles
Search
Showing results (1-10 of 17) with videos related to
Sort By:
Page
of 2
Cerebral Cortex (New York, N.Y. : 1991)
|
October 28, 2005
The cingulate as a catalyst region for global dysfunction: a dynamical modelling paradigm
Dina M Kronhaus, David J Willshaw
Development (Cambridge, England)
|
October 31, 2002
Influence of cell fate mechanisms upon retinal mosaic formation: a modelling study
Stephen J Eglen, David J Willshaw
Network (Bristol, England)
|
March 25, 2008
Asynchronous inputs and NMDA conductances predict excitatory responses in the cortical-cA1 pathway of the hippocampus
Kit D Longden, David J Willshaw
Eneuro
|
October 18, 2023
Reanalysis of EphA3 Knock-In Double Maps in Mouse Suggests That Stochasticity in Topographic Map Formation Acts at the Retina Rather than between Competing Mechanisms at the Colliculus
David J Willshaw, Nicholas M Gale
Frontiers in Neuroinformatics
|
January 31, 2014
morphforge: a toolbox for simulating small networks of biologically detailed neurons in Python
Michael J Hull, David J Willshaw
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience
|
January 31, 2014
Analysis of local and global topographic order in mouse retinocollicular maps
David J Willshaw, David C Sterratt, Adrianna Teriakidis
The Journal of Comparative Neurology
|
March 21, 2012
Prevalence and elimination of sibling neurite convergence in motor units supplying neonatal and adult mouse skeletal muscle
Adrianna Teriakidis, David J Willshaw, Richard R Ribchester
IEEE Transactions on Biomedical Circuits and Systems
|
July 16, 2013
Spike-timing-dependent plasticity with weight dependence evoked from physical constraints
Simeon A Bamford, Alan F Murray, David J Willshaw
Neural Networks : the Official Journal of the International Neural Network Society
|
February 24, 2010
Synaptic rewiring for topographic mapping and receptive field development
Simeon A Bamford, Alan F Murray, David J Willshaw
IEEE Transactions on Neural Networks
|
January 15, 2010
Large developing receptive fields using a distributed and locally reprogrammable address-event receiver
Simeon A Bamford, Alan F Murray, David J Willshaw
Page
of 2