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Deep brain stimulation in the lateral orbitofrontal cortex impairs spatial reversal learning.Deep brain stimulation affects conditioned and unconditioned anxiety in different brain areas.Brain Microdialysate Monoamines in Relation to Circadian Rhythms, Sleep, and Sleep Deprivation - a Systematic Review, Network Meta-analysis, and New Primary DataThe serotonergic system in obsessive-compulsive disorder.Animal studies in deep brain stimulation research.Intermediate filament transcription in astrocytes is repressed by proteasome inhibition.Deep brain stimulation of the medial forebrain bundle elevates striatal dopamine concentration without affecting spontaneous or reward-induced phasic releaseUnaltered instrumental learning and attenuated body-weight gain in rats during non-rotating simulated shiftwork.A new automated method for rat sleep deprivation with minimal confounding effects on corticosterone and locomotor activity.Instrumental learning in a mouse model for obsessive-compulsive disorderAlterations in blood glucose and plasma glucagon concentrations during deep brain stimulation in the shell region of the nucleus accumbens in rats.Spatial reversal learning is robust to total sleep deprivation.Switch-task performance in rats is disturbed by 12 h of sleep deprivation but not by 12 h of sleep fragmentation.Unilateral deep brain stimulation in the nucleus accumbens core does not affect local monoamine release.Phasic dopamine release induced by positive feedback predicts individual differences in reversal learningRegionally distinct phasic dopamine release patterns in the striatum during reversal learningDeep brain stimulation of the accumbens increases dopamine, serotonin and noradrenaline in the prefrontal cortex.Intracerebral Adenosine During Sleep DeprivationEvidence for distinct forms of compulsivity in the SAPAP3 mutant-mouse model for obsessive-compulsive disorderDeep brain stimulation in addiction: a review of potential brain targets.Prazosin addition to fluvoxamineConcept of functional neuroteratology and the importance of neurochemistryRisk-Based Decision MakingDopaminergic control of cognitive flexibility in humans and animalsSingle-cell and population coding of expected reward probability in the orbitofrontal cortex of the rat.Monitoring Deep Brain Stimulation by measuring regional brain oxygen responses in freely moving miceCentral monoamine metabolism in the male Brown-Norway rat in relation to aging and testosteroneTryptophan depletion and serotonin release - a critical reappraisal.Deep brain stimulation and the role of astrocytes.Animal studies in clinical MRI scannersLasting effects of chronic fluoxetine treatment on the late developing rat brain: Age-dependent changes in the serotonergic neurotransmitter system assessed by pharmacological MRI.Instrumental learning: an animal model for sleep dependent memory enhancement.Molecular changes underlying reduced Pineal Melatonin levels in Alzheimer's disease; Alterations in Preclinical and Clinical StagesUnravelling the actions of deep brain stimulation: potential role for astrocytes.Differential Effects of Deep Brain Stimulation of the Internal Capsule and the Striatum on Excessive Grooming in Sapap3 Mutant Mice
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M.G.P. Feenstra
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Public - No restriction
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Publiek - Geen beperking
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dr.
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