Bruce Graham
Affiliations: | Computing Science & Mathematics | University of Stirling, Stirling, Scotland, United Kingdom |
Area:
computational neuroscienceWebsite:
http://www.cs.stir.ac.uk/~bpg/Google:
"Bruce Graham"Mean distance: 16.45 (cluster 17)
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Publications
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Richardson A, Ciampani V, Stancu M, et al. (2022) Kv3.3 subunits control presynaptic action potential waveform and neurotransmitter release at a central excitatory synapse. Elife. 11 |
Lucas SJ, Michel CB, Marra V, et al. (2018) Glucose and lactate as metabolic constraints on presynaptic transmission at an excitatory synapse. The Journal of Physiology |
Sharpee TO, Destexhe A, Kawato M, et al. (2016) 25th Annual Computational Neuroscience Meeting: CNS-2016 Bmc Neuroscience. 17: 54 |
Michel CB, Hennig MH, Graham BP. (2014) Nitric oxide activity-dependent regulator compensates synaptic depression and enhances metabolic efficiency in the auditory brainstem Bmc Neuroscience. 15: P154 |
Sterratt D, Graham B, Gillies A, et al. (2011) Principles of computational modelling in neuroscience Principles of Computational Modelling in Neuroscience. 1-390 |
Yang Z, Hennig MH, Postlethwaite M, et al. (2009) Wide-band information transmission at the calyx of Held. Neural Computation. 21: 991-1017 |
Hennig MH, Postlethwaite M, Forsythe ID, et al. (2008) Interactions between multiple sources of short-term plasticity during evoked and spontaneous activity at the rat calyx of Held. The Journal of Physiology. 586: 3129-46 |
Postlethwaite M, Hennig MH, Steinert JR, et al. (2007) Acceleration of AMPA receptor kinetics underlies temperature-dependent changes in synaptic strength at the rat calyx of Held. The Journal of Physiology. 579: 69-84 |
Cutsuridis V, Hunter R, Cobb S, et al. (2007) Storage and recall in the CA1 microcircuit of the hippocampus: a biophysical model Bmc Neuroscience. 8 |
Yang Z, Hennig MH, Postlethwaite M, et al. (2007) Analysis of the factors influencing information transmission at the calyx of Held Bmc Neuroscience. 8: P160 |