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Peter A Appleby

Showing results (1-10 of 11) with videos related to

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Biological Cybernetics|July 25, 2012
A model of chemotaxis and associative learning in C. elegansPeter A Appleby
Journal of Computational Neuroscience|August 15, 2013
The role of multiple chemotactic mechanisms in a model of chemotaxis in C. elegans: different mechanisms are specialised for different environmentsPeter A Appleby
Neural Computation|August 16, 2006
Stable competitive dynamics emerge from multispike interactions in a stochastic model of spike-timing-dependent plasticityPeter A Appleby, Terry Elliott
Neural Computation|September 15, 2005
Synaptic and temporal ensemble interpretation of spike-timing-dependent plasticityPeter A Appleby, Terry Elliott
Neural Computation|March 27, 2007
Multispike interactions in a stochastic model of spike-timing-dependent plasticityPeter A Appleby, Terry Elliott
Network (Bristol, England)|September 5, 2009
Additive neurogenesis as a strategy for avoiding interference in a sparsely-coding dentate gyrusPeter A Appleby, Laurenz Wiskott
Plos Computational Biology|February 8, 2011
The role of additive neurogenesis and synaptic plasticity in a hippocampal memory model with grid-cell like inputPeter A Appleby, Gerd Kempermann, Laurenz Wiskott
Journal of the Royal Society, Interface|February 20, 2015
Sources of variability in cytosolic calcium transients triggered by stimulation of homogeneous uro-epithelial cell monolayersPeter A Appleby, Saqib Shabir, Jennifer Southgate, et al.
Journal of the Royal Society, Interface|July 19, 2013
Cell-type-specific modelling of intracellular calcium signalling: a urothelial cell modelPeter A Appleby, Saqib Shabir, Jennifer Southgate, et al.
Frontiers in Computational Neuroscience|November 20, 2012
Triphasic spike-timing-dependent plasticity organizes networks to produce robust sequences of neural activityAmelia Waddington, Peter A Appleby, Marc De Kamps, et al.
Pageof 2

Showing results (1-10 of 11) with videos related to

Sort By:
Pageof 2
Biological Cybernetics|July 25, 2012
A model of chemotaxis and associative learning in C. elegansPeter A Appleby
Journal of Computational Neuroscience|August 15, 2013
The role of multiple chemotactic mechanisms in a model of chemotaxis in C. elegans: different mechanisms are specialised for different environmentsPeter A Appleby
Neural Computation|August 16, 2006
Stable competitive dynamics emerge from multispike interactions in a stochastic model of spike-timing-dependent plasticityPeter A Appleby, Terry Elliott
Neural Computation|September 15, 2005
Synaptic and temporal ensemble interpretation of spike-timing-dependent plasticityPeter A Appleby, Terry Elliott
Neural Computation|March 27, 2007
Multispike interactions in a stochastic model of spike-timing-dependent plasticityPeter A Appleby, Terry Elliott
Network (Bristol, England)|September 5, 2009
Additive neurogenesis as a strategy for avoiding interference in a sparsely-coding dentate gyrusPeter A Appleby, Laurenz Wiskott
Plos Computational Biology|February 8, 2011
The role of additive neurogenesis and synaptic plasticity in a hippocampal memory model with grid-cell like inputPeter A Appleby, Gerd Kempermann, Laurenz Wiskott
Journal of the Royal Society, Interface|February 20, 2015
Sources of variability in cytosolic calcium transients triggered by stimulation of homogeneous uro-epithelial cell monolayersPeter A Appleby, Saqib Shabir, Jennifer Southgate, et al.
Journal of the Royal Society, Interface|July 19, 2013
Cell-type-specific modelling of intracellular calcium signalling: a urothelial cell modelPeter A Appleby, Saqib Shabir, Jennifer Southgate, et al.
Frontiers in Computational Neuroscience|November 20, 2012
Triphasic spike-timing-dependent plasticity organizes networks to produce robust sequences of neural activityAmelia Waddington, Peter A Appleby, Marc De Kamps, et al.
Pageof 2