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Bruce Graham, Imre Vida, Stuart Cobb, Vassilis Cutsuridis
Table Of Contents
Preface Part I 1. Introduction-Experimental background 2. Connectivity of the hippocampus 3. Cell morphologies 4. Physiological properties of hippocampal neurons 5. Glutamatergic neurotransmission in the hippocampus 6. Fast and slow GABAergic transmission in hippocampal circuits 7. Synaptic plasticity at hippocampal synapses 8. Neuromodulation of hippocampal cells and circuits 9. Neuronal Activity Patterns during Hippocampal Network Oscillations in Vitro 10. Neuronal Activity Patterns of Anaesthetized Animals 11. Spatial and behavioral correlates of hippocampal neuronal activity: A primer for computational analysis Part II 12. Introduction-Computational Analysis 13. The making of a detailed CA1 pyramidal neuron model 14. CA3 cells: Detailed and simplified pyramidal cell models 15. Entorhinal cortex cells 16. Single Neuron Models: Interneurons 17. Gamma and Theta Rhythms in Biophysical Models of Hippocampal Circuits 18. Associative memory models 19. Microcircuit model of the dentate gyrus in epilepsy 20. Multi-level models 21. Biophysics-based models of LTP/LTD 22. A phenomenological calcium-based model of STDP 23. Computer simulation environments
Dr. Vassilis Cutsuridis is a Research Fellow in the Department of Computing Science and Mathematics at the University of Stirling, Scotland, UK.Bruce P. Graham is a Reader in Computing Science in the Department of Computing Science and Mathematics at the University of Stirling.Stuart Cobb is a Senior Lecturer in the Neuroscience and Molecular Pharmacology Department at the University of Glasgow, Scotland, UK.Imre Vida is a Senior Lecturer in the Neuroscience and Molecular Pharmacology Department at the University of Glasgow.