Keyword search (4,163 papers available)

"Fos" Keyword-tagged Publications:

Title Authors PubMed ID
1 Post-subsidy Era: Potential for Carbon Pricing in Industrial Fisheries among Global Major Fishing Countries Peng H; Hao J; Lyu L; Wan S; An C; 40737555
ENCS
2 Examining Sleep Quality in Adult Foster Care Alumni: Implications for Later Life Health and Well-Being Keller A; Mann-Feder V; Collin-Vézina D; MacKenzie MJ; 40724719
CONCORDIA
3 Disruptive effects of d-amphetamine on conditioned sexual inhibition in the male rat Germé K; Persad D; Petit-Robinson J; Amir S; Pfaus JG; 40232387
PSYCHOLOGY
4 Acute ethanol disrupts conditioned inhibition in the male rat Germé K; Pfaus JG; 38822097
CSBN
5 Neural correlates of recall and extinction in a rat model of appetitive Pavlovian conditioning Brown A; Villaruel FR; Chaudhri N; 36496079
PSYCHOLOGY
6 A regional numerical environmental multimedia modeling approach to assess spatial Eco-Environmental exposure risk of perfluorooctane sulfonate (PFOS) in the Pearl river basin Chen Z; Dong J; Asif Z; 35121494
ENCS
7 Effect of electrolytic lesions of the dorsal diencephalic conduction system on the distribution of Fos-like immunoreactivity induced by rewarding electrical stimulation. Fakhoury M, Voyer D, Lévesque D, Rompré PP 27514573
CSBN
8 Gating of the neuroendocrine stress responses by stressor salience in early lactating female rats is independent of infralimbic cortex activation and plasticity. Hillerer KM, Woodside B, Parkinson E, Long H, Verlezza S, Walker CD 29397787
CSBN

 

Title:Neural correlates of recall and extinction in a rat model of appetitive Pavlovian conditioning
Authors:Brown AVillaruel FRChaudhri N
Link:https://pubmed.ncbi.nlm.nih.gov/36496079/
DOI:10.1016/j.bbr.2022.114248
Publication:Behavioural brain research
Keywords:FosInfralimbic cortexNeural networkNucleus accumbensParaventricular nucleus of the thalamus
PMID:36496079 Category: Date Added:2022-12-11
Dept Affiliation: PSYCHOLOGY
1 Center for Studies in Behavioural Neurobiology, Department of Psychology, Concordia University, Montreal, QC, Canada. Electronic address: alexabrown1212@gmail.com.
2 Center for Studies in Behavioural Neurobiology, Department of Psychology, Concordia University, Montreal, QC, Canada.

Description:

Extinction is a fundamental form of inhibitory learning that is important for adapting to changing environmental contingencies. While numerous studies have investigated the neural correlates of extinction using Pavlovian fear conditioning and appetitive operant reward-seeking procedures, less is known about the neural circuitry mediating the extinction of appetitive Pavlovian responding. Here, we aimed to generate an extensive brain activation map of extinction learning in a rat model of appetitive Pavlovian conditioning. Male Long-Evans rats were trained to associate a conditioned stimulus (CS; 20 s white noise) with the delivery of a 10% sucrose unconditioned stimulus (US; 0.3 ml/CS) to a fluid port. Control groups also received CS presentations, but sucrose was delivered either during the inter-trial interval or in the home-cage. After conditioning, 1 or 6 extinction sessions were conducted in which the CS was presented but sucrose was withheld. We performed Fos immunohistochemistry and network connectivity analyses on a set of cortical, striatal, thalamic, and amygdalar brain regions. Neural activity in the prelimbic cortex, ventral orbitofrontal cortex, nucleus accumbens core, and paraventricular nucleus of the thalamus was greater during recall relative to extinction. Conversely, prolonged extinction following 6 sessions induced increased neural activity in the infralimbic cortex, medial orbitofrontal cortex, and nucleus accumbens shell compared to home-cage controls. All these structures were similarly recruited during recall on the first extinction session. These findings provide novel evidence for the contribution of brain areas and neural networks that are differentially involved in the recall versus extinction of appetitive Pavlovian conditioned responding.





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