Microdialysis

Hippocampal extracellular amino acids and EEG spectral analysis in a genetic rat model of absence epilepsy

Genetics / Psychology / Neuropharmacology / Electroencephalography / Learning / Hippocampus / Glutamate / Absence epilepsy / Spectral analysis / Female / Animals / Cognitive Process / Oscillations / Microdialysis / Amino Acids / Baclofen / Rats / Wistar Rats / Amino Acid Profile / Rat Model / Neurosciences / Extracellular Space / Hippocampus / Glutamate / Absence epilepsy / Spectral analysis / Female / Animals / Cognitive Process / Oscillations / Microdialysis / Amino Acids / Baclofen / Rats / Wistar Rats / Amino Acid Profile / Rat Model / Neurosciences / Extracellular Space

Inactivation of 5-HT2C Receptors Potentiates Consequences of Serotonin Reuptake Blockade

Neuropsychopharmacology / Serotonin / Animals / Male / Synaptic Transmission / Microdialysis / Rats / Rat / Receptor / Wistar Rats / Brain Chemistry / Serotonin antagonists / Serotonin Uptake Inhibitors / Selective serotonin reuptake inhibitor / Microdialysis / Rats / Rat / Receptor / Wistar Rats / Brain Chemistry / Serotonin antagonists / Serotonin Uptake Inhibitors / Selective serotonin reuptake inhibitor

Inactivation of 5-HT2C Receptors Potentiates Consequences of Serotonin Reuptake Blockade

Neuropsychopharmacology / Serotonin / Animals / Male / Synaptic Transmission / Microdialysis / Rats / Rat / Receptor / Wistar Rats / Brain Chemistry / Serotonin antagonists / Serotonin Uptake Inhibitors / Selective serotonin reuptake inhibitor / Microdialysis / Rats / Rat / Receptor / Wistar Rats / Brain Chemistry / Serotonin antagonists / Serotonin Uptake Inhibitors / Selective serotonin reuptake inhibitor

In vitro and in vivo comparison of two non-peptide tachykinin NK3 receptor antagonists: Improvements in efficacy achieved through enhanced brain penetration or altered pharmacological characteristics

Animal Behavior / Neurotransmission / Pharmacokinetics / Comparative Study / Prefrontal Cortex / Nucleus Accumbens / Dopamine / In Vitro / Brain / Humans / Cerebral Cortex / Animals / Male / Central Nervous System / Peptides / Habenula / Neurons / Efficiency / Haloperidol / European / Microdialysis / Molecular cloning / In Vivo / Rats / Neuronal Activity / Guinea Pig / Substance P / Quinolines / Extracellular Space / Pharmacokinetic / Medial Prefrontal Cortex / Clinical evaluation / Inositol Phosphates / Nucleus Accumbens / Dopamine / In Vitro / Brain / Humans / Cerebral Cortex / Animals / Male / Central Nervous System / Peptides / Habenula / Neurons / Efficiency / Haloperidol / European / Microdialysis / Molecular cloning / In Vivo / Rats / Neuronal Activity / Guinea Pig / Substance P / Quinolines / Extracellular Space / Pharmacokinetic / Medial Prefrontal Cortex / Clinical evaluation / Inositol Phosphates
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