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Depression and Anxiety, ISSN 1091-4269, 03/2011, Volume 28, Issue 3, pp. 186 - 193
Background: Posttraumatic stress disorder (PTSD) is associated with enhanced noradrenergic activity. Animal and human studies demonstrate that noradrenergic... 
norepinephrine | amygdala | fear conditioning | exposure therapy | isoproterenol | reconsolidation | β‐adrenergic receptor | posttraumatic stress disorder | PTSD | anxiety | extinction | late‐onset PTSD | propranolol | fear | Late-onset ptsd | Amygdala | Extinction | Posttraumatic stress disorder | Isoproterenol | Exposure therapy | Fear conditioning | Fear | Reconsolidation | β-adrenergic receptor | Anxiety | Norepinephrine | Propranolol | late-onset PTSD | POSTTRAUMATIC-STRESS-DISORDER | PSYCHIATRY | PSYCHOLOGY, CLINICAL | PROTEIN-SYNTHESIS | RETRIEVAL | PSYCHOLOGY | PATHOPHYSIOLOGY | beta-adrenergic receptor | CONSOLIDATION | ANIMAL-MODELS | NEUROBIOLOGY | Amygdala - physiopathology | Amygdala - drug effects | Norepinephrine - physiology | Humans | Retention (Psychology) - drug effects | Extinction, Psychological - drug effects | Fear - drug effects | Male | Stress Disorders, Post-Traumatic - physiopathology | Fear - physiology | Retention (Psychology) - physiology | Implosive Therapy | Adrenergic beta-Antagonists - pharmacology | Propranolol - pharmacology | Receptors, Adrenergic, beta - drug effects | Extinction, Psychological - physiology | Cues | Conditioning, Classical - drug effects | Acoustic Stimulation | Adrenergic beta-Agonists - pharmacology | Rats | Receptors, Adrenergic, beta - physiology | Conditioning, Classical - physiology | Rats, Sprague-Dawley | Animals | Isoproterenol - pharmacology | Signal Transduction - physiology | Learning | Memory | Post-traumatic stress disorder | Depression | Neurotransmitters | PTSD (DSM-IV) | Conditioned Emotional Responses | Animal Models | Stressors
Journal Article
Journal of Toxicologic Pathology, ISSN 0914-9198, 2016, Volume 29, Issue 2, pp. 77 - 84
Although Hatano high-avoidance and low-avoidance rats (HAA and LAA, respectively) have been selectively bred for good versus poor avoidance learning, HAA rats... 
Sprague-Dawley rat | estrous cycle | aging | inbred strain | incidence | neoplastic and non-neoplastic lesions | Aging | Neoplastic and non-neoplastic lesions | Estrous cycle | Inbred strain | Incidence | Original
Journal Article
Journal Article
Science, ISSN 0036-8075, 12/2011, Volume 334, Issue 6061, pp. 1427 - 1430
Journal Article
European Journal of Neuroscience, ISSN 0953-816X, 04/2017, Volume 45, Issue 7, pp. 922 - 931
Although certain drugs of abuse are known to disrupt brain glucose metabolism (BGluM), the effects of opiates on BGluM are not well characterized. Moreover,... 
brain imaging | brain energy metabolism | opiate addition | drug self‐administration | drug self-administration | 2-DEOXYGLUCOSE | SMALL ANIMAL PET | NALOXONE | NEUROSCIENCES | ADDICTION | DEPENDENCE | POSITRON-EMISSION-TOMOGRAPHY | NUCLEUS | RECEPTORS | WITHDRAWAL | BRAIN | Anesthetics, Inhalation - pharmacology | Fluorodeoxyglucose F18 - pharmacokinetics | Radiopharmaceuticals - pharmacokinetics | Anesthetics, Inhalation - administration & dosage | Isoflurane - pharmacology | Morphine - pharmacology | Substance Withdrawal Syndrome - etiology | Anesthesia, Intravenous - adverse effects | Analgesics, Opioid - pharmacology | Rats | Isoflurane - adverse effects | Male | Anesthetics, Inhalation - adverse effects | Corpus Striatum - metabolism | Rats, Sprague-Dawley | Positron Emission Tomography Computed Tomography | Analgesics, Opioid - adverse effects | Animals | Analgesics, Opioid - administration & dosage | Corpus Striatum - drug effects | Corpus Striatum - diagnostic imaging | Morphine - administration & dosage | Morphine - adverse effects | Glucose metabolism | Brain research | PET imaging | Physiological aspects | Anesthesia | Morphine | Glucose | Dextrose | Cerebellum | Brain | Cortex (olfactory) | Drug abuse | Basal ganglia | Intravenous administration | Mesencephalon | Emission analysis | Stimulation | Opiates | Hypothalamus | Infusion | Computed tomography | Rodents | Neostriatum | Thalamus | Defecation | Jugular vein | Self-administration | Narcotics | Therapeutic applications | Positron emission | Injection | Metabolism | Isoflurane | Ganglia | Emissions control | Positron emission tomography | Hippocampus
Journal Article