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Specific entrainment of mitral cells during gamma oscillation in the rat olfactory bulbInvestigating local and long-range neuronal network dynamics by simultaneous optogenetics, reverse microdialysis and silicon probe recordings in vivo.Role for T-type Ca2+ channels in sleep waves.The thalamocortical network as a single slow wave-generating unit.Role for serotonin2A (5-HT2A) and 2C (5-HT2C) receptors in experimental absence seizures.Dynamic Analysis of the Conditional Oscillator Underlying Slow Waves in Thalamocortical Neurons.Essential thalamic contribution to slow waves of natural sleep.Competing Mechanisms of Gamma and Beta Oscillations in the Olfactory Bulb Based on Multimodal Inhibition of Mitral Cells Over a Respiratory Cycle.Respiration-gated formation of gamma and beta neural assemblies in the mammalian olfactory bulb.Dual function of thalamic low-vigilance state oscillations: rhythm-regulation and plasticity.Hybrid intracerebral probe with integrated bare LED chips for optogenetic studies.Thalamus and cortex: inseparable partners in shaping sleep slow waves?T-type calcium channels consolidate tonic action potential output of thalamic neurons to neocortex.Cortical drive and thalamic feed-forward inhibition control thalamic output synchrony during absence seizures.Minimal alterations in T-type calcium channel gating markedly modify physiological firing dynamicsSuppression of Hyperpolarization-Activated Cyclic Nucleotide-Gated Channel Function in Thalamocortical Neurons Prevents Genetically Determined and Pharmacologically Induced Absence Seizures[New light shed on thalamocortical excitability in absence epilepsy]
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description
investigador
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researcher
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name
F David
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type
label
F David
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F David
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P31
P496
0000-0003-1993-8931