Nucleus Accumbens

Medial prefrontal transection enhances social interaction

Cognitive Science / Social Interaction / Prefrontal Cortex / Nucleus Accumbens / Dopamine / Social behavior / Glutamate / Brain / Animals / Male / Amphetamine / Animal Model / Interpersonal Relations / Microdialysis / Rats / Time Factors / Wistar Rats / Social Behavior / Diazepam / Neurosciences / Glutamic Acid / Dextroamphetamine / Gamma-Aminobutyric Acid / Medial Prefrontal Cortex / Motor activity / Glutamate release / Social behavior / Glutamate / Brain / Animals / Male / Amphetamine / Animal Model / Interpersonal Relations / Microdialysis / Rats / Time Factors / Wistar Rats / Social Behavior / Diazepam / Neurosciences / Glutamic Acid / Dextroamphetamine / Gamma-Aminobutyric Acid / Medial Prefrontal Cortex / Motor activity / Glutamate release

Medial prefrontal transection enhances social interaction

Cognitive Science / Social Interaction / Prefrontal Cortex / Nucleus Accumbens / Dopamine / Social behavior / Glutamate / Brain / Animals / Male / Amphetamine / Animal Model / Interpersonal Relations / Microdialysis / Rats / Time Factors / Wistar Rats / Social Behavior / Diazepam / Neurosciences / Glutamic Acid / Dextroamphetamine / Gamma-Aminobutyric Acid / Medial Prefrontal Cortex / Motor activity / Glutamate release / Social behavior / Glutamate / Brain / Animals / Male / Amphetamine / Animal Model / Interpersonal Relations / Microdialysis / Rats / Time Factors / Wistar Rats / Social Behavior / Diazepam / Neurosciences / Glutamic Acid / Dextroamphetamine / Gamma-Aminobutyric Acid / Medial Prefrontal Cortex / Motor activity / Glutamate release

Medial prefrontal transection enhances social interaction

Cognitive Science / Social Interaction / Prefrontal Cortex / Nucleus Accumbens / Dopamine / Social behavior / Glutamate / Brain / Animals / Male / Amphetamine / Animal Model / Interpersonal Relations / Microdialysis / Rats / Time Factors / Wistar Rats / Social Behavior / Diazepam / Neurosciences / Glutamic Acid / Dextroamphetamine / Gamma-Aminobutyric Acid / Medial Prefrontal Cortex / Motor activity / Glutamate release / Social behavior / Glutamate / Brain / Animals / Male / Amphetamine / Animal Model / Interpersonal Relations / Microdialysis / Rats / Time Factors / Wistar Rats / Social Behavior / Diazepam / Neurosciences / Glutamic Acid / Dextroamphetamine / Gamma-Aminobutyric Acid / Medial Prefrontal Cortex / Motor activity / Glutamate release

Medial prefrontal transection enhances social interaction

Cognitive Science / Social Interaction / Prefrontal Cortex / Nucleus Accumbens / Dopamine / Social behavior / Glutamate / Brain / Animals / Male / Amphetamine / Animal Model / Interpersonal Relations / Microdialysis / Rats / Time Factors / Wistar Rats / Social Behavior / Diazepam / Neurosciences / Glutamic Acid / Dextroamphetamine / Gamma-Aminobutyric Acid / Medial Prefrontal Cortex / Motor activity / Glutamate release / Social behavior / Glutamate / Brain / Animals / Male / Amphetamine / Animal Model / Interpersonal Relations / Microdialysis / Rats / Time Factors / Wistar Rats / Social Behavior / Diazepam / Neurosciences / Glutamic Acid / Dextroamphetamine / Gamma-Aminobutyric Acid / Medial Prefrontal Cortex / Motor activity / Glutamate release

Medial prefrontal transection enhances social interaction

Cognitive Science / Social Interaction / Prefrontal Cortex / Nucleus Accumbens / Dopamine / Social behavior / Glutamate / Brain / Animals / Male / Amphetamine / Animal Model / Interpersonal Relations / Microdialysis / Rats / Time Factors / Wistar Rats / Social Behavior / Diazepam / Neurosciences / Glutamic Acid / Dextroamphetamine / Gamma-Aminobutyric Acid / Medial Prefrontal Cortex / Motor activity / Glutamate release / Social behavior / Glutamate / Brain / Animals / Male / Amphetamine / Animal Model / Interpersonal Relations / Microdialysis / Rats / Time Factors / Wistar Rats / Social Behavior / Diazepam / Neurosciences / Glutamic Acid / Dextroamphetamine / Gamma-Aminobutyric Acid / Medial Prefrontal Cortex / Motor activity / Glutamate release

Medial prefrontal transection enhances social interaction

Cognitive Science / Social Interaction / Prefrontal Cortex / Nucleus Accumbens / Dopamine / Social behavior / Glutamate / Brain / Animals / Male / Amphetamine / Animal Model / Interpersonal Relations / Microdialysis / Rats / Time Factors / Wistar Rats / Social Behavior / Diazepam / Neurosciences / Glutamic Acid / Dextroamphetamine / Gamma-Aminobutyric Acid / Medial Prefrontal Cortex / Motor activity / Glutamate release / Social behavior / Glutamate / Brain / Animals / Male / Amphetamine / Animal Model / Interpersonal Relations / Microdialysis / Rats / Time Factors / Wistar Rats / Social Behavior / Diazepam / Neurosciences / Glutamic Acid / Dextroamphetamine / Gamma-Aminobutyric Acid / Medial Prefrontal Cortex / Motor activity / Glutamate release

Medial prefrontal transection enhances social interaction

Cognitive Science / Social Interaction / Prefrontal Cortex / Nucleus Accumbens / Dopamine / Social behavior / Glutamate / Brain / Animals / Male / Amphetamine / Animal Model / Interpersonal Relations / Microdialysis / Rats / Time Factors / Wistar Rats / Social Behavior / Diazepam / Neurosciences / Glutamic Acid / Dextroamphetamine / Gamma-Aminobutyric Acid / Medial Prefrontal Cortex / Motor activity / Glutamate release / Social behavior / Glutamate / Brain / Animals / Male / Amphetamine / Animal Model / Interpersonal Relations / Microdialysis / Rats / Time Factors / Wistar Rats / Social Behavior / Diazepam / Neurosciences / Glutamic Acid / Dextroamphetamine / Gamma-Aminobutyric Acid / Medial Prefrontal Cortex / Motor activity / Glutamate release

trash

Zoology / Nucleus Accumbens / Antibodies / Animals / Male / The / Dendrites / Medical Physiology / Rats / Substance P / Comparative Neurology / Neurosciences / The / Dendrites / Medical Physiology / Rats / Substance P / Comparative Neurology / Neurosciences

Medial prefrontal transection enhances social interaction

Cognitive Science / Social Interaction / Prefrontal Cortex / Nucleus Accumbens / Dopamine / Social behavior / Glutamate / Brain / Animals / Male / Amphetamine / Animal Model / Interpersonal Relations / Microdialysis / Rats / Time Factors / Wistar Rats / Social Behavior / Diazepam / Neurosciences / Glutamic Acid / Dextroamphetamine / Gamma-Aminobutyric Acid / Medial Prefrontal Cortex / Motor activity / Glutamate release / Social behavior / Glutamate / Brain / Animals / Male / Amphetamine / Animal Model / Interpersonal Relations / Microdialysis / Rats / Time Factors / Wistar Rats / Social Behavior / Diazepam / Neurosciences / Glutamic Acid / Dextroamphetamine / Gamma-Aminobutyric Acid / Medial Prefrontal Cortex / Motor activity / Glutamate release

Medial prefrontal transection enhances social interaction

Cognitive Science / Social Interaction / Prefrontal Cortex / Nucleus Accumbens / Dopamine / Social behavior / Glutamate / Brain / Animals / Male / Amphetamine / Animal Model / Interpersonal Relations / Microdialysis / Rats / Time Factors / Wistar Rats / Social Behavior / Diazepam / Neurosciences / Glutamic Acid / Dextroamphetamine / Gamma-Aminobutyric Acid / Medial Prefrontal Cortex / Motor activity / Glutamate release / Social behavior / Glutamate / Brain / Animals / Male / Amphetamine / Animal Model / Interpersonal Relations / Microdialysis / Rats / Time Factors / Wistar Rats / Social Behavior / Diazepam / Neurosciences / Glutamic Acid / Dextroamphetamine / Gamma-Aminobutyric Acid / Medial Prefrontal Cortex / Motor activity / Glutamate release

Medial prefrontal transection enhances social interaction

Cognitive Science / Social Interaction / Prefrontal Cortex / Nucleus Accumbens / Dopamine / Social behavior / Glutamate / Brain / Animals / Male / Amphetamine / Animal Model / Interpersonal Relations / Microdialysis / Rats / Time Factors / Wistar Rats / Social Behavior / Diazepam / Neurosciences / Glutamic Acid / Dextroamphetamine / Gamma-Aminobutyric Acid / Medial Prefrontal Cortex / Motor activity / Glutamate release / Social behavior / Glutamate / Brain / Animals / Male / Amphetamine / Animal Model / Interpersonal Relations / Microdialysis / Rats / Time Factors / Wistar Rats / Social Behavior / Diazepam / Neurosciences / Glutamic Acid / Dextroamphetamine / Gamma-Aminobutyric Acid / Medial Prefrontal Cortex / Motor activity / Glutamate release

Medial prefrontal transection enhances social interaction

Cognitive Science / Social Interaction / Prefrontal Cortex / Nucleus Accumbens / Dopamine / Social behavior / Glutamate / Brain / Animals / Male / Amphetamine / Animal Model / Interpersonal Relations / Microdialysis / Rats / Time Factors / Wistar Rats / Social Behavior / Diazepam / Neurosciences / Glutamic Acid / Dextroamphetamine / Gamma-Aminobutyric Acid / Medial Prefrontal Cortex / Motor activity / Glutamate release / Social behavior / Glutamate / Brain / Animals / Male / Amphetamine / Animal Model / Interpersonal Relations / Microdialysis / Rats / Time Factors / Wistar Rats / Social Behavior / Diazepam / Neurosciences / Glutamic Acid / Dextroamphetamine / Gamma-Aminobutyric Acid / Medial Prefrontal Cortex / Motor activity / Glutamate release

Medial prefrontal transection enhances social interaction

Cognitive Science / Social Interaction / Prefrontal Cortex / Nucleus Accumbens / Dopamine / Social behavior / Glutamate / Brain / Animals / Male / Amphetamine / Animal Model / Interpersonal Relations / Microdialysis / Rats / Time Factors / Wistar Rats / Social Behavior / Diazepam / Neurosciences / Glutamic Acid / Dextroamphetamine / Gamma-Aminobutyric Acid / Medial Prefrontal Cortex / Motor activity / Glutamate release / Social behavior / Glutamate / Brain / Animals / Male / Amphetamine / Animal Model / Interpersonal Relations / Microdialysis / Rats / Time Factors / Wistar Rats / Social Behavior / Diazepam / Neurosciences / Glutamic Acid / Dextroamphetamine / Gamma-Aminobutyric Acid / Medial Prefrontal Cortex / Motor activity / Glutamate release

Medial prefrontal transection enhances social interaction

Cognitive Science / Social Interaction / Prefrontal Cortex / Nucleus Accumbens / Dopamine / Social behavior / Glutamate / Brain / Animals / Male / Amphetamine / Animal Model / Interpersonal Relations / Microdialysis / Rats / Time Factors / Wistar Rats / Social Behavior / Diazepam / Neurosciences / Glutamic Acid / Dextroamphetamine / Gamma-Aminobutyric Acid / Medial Prefrontal Cortex / Motor activity / Glutamate release / Social behavior / Glutamate / Brain / Animals / Male / Amphetamine / Animal Model / Interpersonal Relations / Microdialysis / Rats / Time Factors / Wistar Rats / Social Behavior / Diazepam / Neurosciences / Glutamic Acid / Dextroamphetamine / Gamma-Aminobutyric Acid / Medial Prefrontal Cortex / Motor activity / Glutamate release

Medial prefrontal transection enhances social interaction

Cognitive Science / Social Interaction / Prefrontal Cortex / Nucleus Accumbens / Dopamine / Social behavior / Glutamate / Brain / Animals / Male / Amphetamine / Animal Model / Interpersonal Relations / Microdialysis / Rats / Time Factors / Wistar Rats / Social Behavior / Diazepam / Neurosciences / Glutamic Acid / Dextroamphetamine / Gamma-Aminobutyric Acid / Medial Prefrontal Cortex / Motor activity / Glutamate release / Social behavior / Glutamate / Brain / Animals / Male / Amphetamine / Animal Model / Interpersonal Relations / Microdialysis / Rats / Time Factors / Wistar Rats / Social Behavior / Diazepam / Neurosciences / Glutamic Acid / Dextroamphetamine / Gamma-Aminobutyric Acid / Medial Prefrontal Cortex / Motor activity / Glutamate release

The Putative Atypical Antipsychotic Drug Amperozide Preferentially Increases c-fos Expression in Rat Medial Prefrontal Cortex and Lateral Septum

Neuropsychopharmacology / Immunohistochemistry / Prefrontal Cortex / Nucleus Accumbens / Serotonin / Dopamine / Animals / Male / Statistical Significance / Amygdala / Rats / Basal ganglia / Atypical Antipsychotics / Wistar Rats / Serotonin antagonists / Medial Prefrontal Cortex / Dopamine / Animals / Male / Statistical Significance / Amygdala / Rats / Basal ganglia / Atypical Antipsychotics / Wistar Rats / Serotonin antagonists / Medial Prefrontal Cortex
Copyright © 2017 DATOSPDF Inc.