''EARLY L-DOPA, BUT NOT PRAMIPEXOLE, RESTORES BASAL GANGLIA ACTIVITY IN PARTIALLY 6-OHDA-LESIONED RATS.''
''BLOCKADE OF MK-801-INDUCED HEAT SHOCK PROTEIN 72/73 IN RAT BRAIN BY ANTIPSYCHOTIC AND MONOAMINERGIC AGENTS TARGETING D2, 5-HT1A, 5-HT2A AND ?1-ADRENERGIC RECEPTORS.''
''EXPRESSION OF 5-HT2A RECEPTORS IN PREFRONTAL CORTEX PYRAMIDAL NEURONS PROJECTING TO NUCLEUS ACCUMBENS. POTENTIAL RELEVANCE FOR ATYPICAL ANTIPSYCHOTIC ACTION.''
''ENHANCED CHARGE CAPACITY IN IRIDIUM OXIDE-GRAPHENE OXIDE HYBRIDS''
''PHYSICAL EXERCISE IMPROVES SYNAPTIC DYSFUNCTION AND RECOVERS THE LOSS OF SURVIVAL FACTORS IN 3XTG-AD MOUSE BRAIN.''
''RNAI-MEDIATED SEROTONIN TRANSPORTER SUPPRESSION RAPIDLY INCREASES SEROTONERGIC NEUROTRANSMISSION AND HIPPOCAMPAL NEUROGENESIS. ''
''LONG TERM COMPULSIVITY ON THE 5-CHOICE SERIAL REACTION TIME TASK AFTER ACUTE CHLORPYRIFOS EXPOSURE.''
''PRECLINICAL MODELS OF SCHIZOPHRENIA''
''MULTIPLE CONFORMATIONS OF 5-HT2A AND 5-HT 2C RECEPTORS IN RAT BRAIN: AN AUTORADIOGRAPHIC STUDY WITH [125I](±)DOI.''
''MITOFUSIN 2 IN POMC NEURONS CONNECTS ER STRESS WITH LEPTIN RESISTANCE AND ENERGY IMBALANCE.''
''CATECHOLAMINE/SEROTONIN INTERACTIONS: SYSTEMS THINKING FOR BRAIN FUNCTION AND DISEASE.''
''RNAI-MEDIATED SEROTONIN TRANSPORTER SUPPRESSION RAPIDLY INCREASES SEROTONERGIC NEUROTRANSMISSION AND HIPPOCAMPAL NEUROGENESIS.''
''ALLOPREGNANOLONE AND PREGNANOLONE ANALOGUES MODIFIED IN THE C RING: SYNTHESIS AND ACTIVITY.''
"ACUTE 5-HT1A AUTORECEPTOR KNOCKDOWN INCREASES ANTIDEPRESSANT RESPONSES AND SEROTONIN RELEASE IN STRESSFUL CONDITIONS.''
''SUBTHALAMIC 6-OHDA-INDUCED LESION ATTENUATES LEVODOPA-INDUCED DYSKINESIAS IN THE RAT MODEL OF PARKINSON'S DISEASE.''
''ACUTE 5-HT?A AUTORECEPTOR KNOCKDOWN INCREASES ANTIDEPRESSANT RESPONSES AND SEROTONIN RELEASE IN STRESSFUL CONDITIONS.''
''SEROTONIN RECEPTORS INVOLVED IN ANTIDEPRESSANT EFFECTS.''
''EXPRESSION OF ?(1)-ADRENERGIC RECEPTORS IN RAT PREFRONTAL CORTEX: CELLULAR CO-LOCALIZATION WITH 5-HT(2A) RECEPTORS.''
''SEROTONIN MODULATION OF CORTICAL NEURONS AND NETWORKS.''
''DYNAMIC ELECTRODEPOSITION OF AMINOACID-POLYPYRROLE ON AMINOACID-PEDOT SUBSTRATES: CONDUCTING POLYMER BILAYERS AS ELECTRODES IN NEURAL SYSTEMS.''