Search results for " amygdala"

showing 10 items of 50 documents

Hippocampal and Amygdalar Volumes Changes in Drug Addicts: A Preliminary Study

2007

Oral comunication for American Society of Neuroradiology 45th Annual Meeting. Chicago, June 9-14 2007

VBM hippocampus amygdala addictionSettore M-PSI/07 - Psicologia DinamicaSettore MED/37 - NeuroradiologiaAlexithymia hippocampus amygdalaSettore MED/36 - Diagnostica Per Immagini E Radioterapia
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Two interconnected functional systems in the amygdala of amniote vertebrates.

2008

The amygdala shows ventropallial and lateropallial derivatives that can be compared among vertebrates according to their topological position, either superficial (cortical amygdala) or deep (basolateral amygdala and amygdalo-hippocampal area), connections and histochemical features. On the other hand, the subpallial amygdala, also called extended amygdala, is composed of medial and central divisions. In mammals, both divisions consist of an intra-amygdaloid portion and a part of the bed nucleus of the stria terminalis. In non-mammals, the intratelencephalic trajectory of the stria terminalis is short and both poles of the extended amygdala are close together. Like its mammalian counterpart,…

Vomeronasal organLateral hypothalamusEvolutionPalliumBiologyAmygdalaMidbrainBirdsExtended amygdalaNeural PathwaysmedicineAnimalsMammalsBrain MappingGeneral NeuroscienceSpecies-specific behavioursReptilesAnatomyAmygdalaBiological EvolutionSubpalliumStria terminalismedicine.anatomical_structurenervous systemForebrainExtended amygdalaVertebratesForebrainNeurosciencepsychological phenomena and processesBasolateral amygdalaBrain research bulletin
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Amygdala

2015

The amygdala is considered a key center in managing emotional information and its dysfunction is at the base of disorders ranging through anxiety, depression, PTSD and autism. However, the amygdala seems heterogeneous both structurally (with pallial and supallial components) and functionally. Thus, whereas cortical and thalamic multimodal sensory inputs enter the basolateral complex, the corticomedial amygdala is dominated by olfactory and vomeronasal inputs. Intrinsic amygdaloid circuitry, connects these two amygdaloid divisions and convey processed information to the main amygdala outputs. The pallial amygdala is the main source for telencephalic outputs to associative cortical areas (e.g…

Vomeronasal organVentral striatumHippocampusSensory systemmedicine.diseaseAmygdalamedicine.anatomical_structurenervous systemFrontal lobeExtended amygdalaExtinction (neurology)medicinePsychologyNeurosciencepsychological phenomena and processes
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The pallial amygdala of amniote vertebrates: evolution of the concept, evolution of the structure

2002

Embryological studies indicate that the amygdala includes pallial structures, namely the cortical amygdala (olfactory and vomeronasal) and the basolateral complex deep to it. In squamate reptiles, the cortical amygdala includes secondary olfactory (the ventral anterior amygdala) and vomeronasal centres (the nucleus sphericus). In birds, the situation is far less clear, due to the relative underdevelopment of the chemosensory systems. The basolateral amygdala of squamate reptiles includes two ventropallial structures: the posterior dorsal ventricular ridge and the lateral amygdala. Like their mammalian counterparts, these centres give rise to glutamatergic projections to the striatal (centro…

Vomeronasal organstriatumStriatumAmygdalaBirdsGlutamatergicLimbic systemlimbic systemNeural PathwaysmedicineAnimalsMammalsbiologyGeneral NeuroscienceReptilesComparative neuroanatomyAnatomyAmygdalabiology.organism_classificationBiological EvolutionHomologycortexmedicine.anatomical_structurenervous systemHypothalamusVertebratesAmnioteNeurosciencepsychological phenomena and processesBasolateral amygdalaBrain Research Bulletin
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Amygdalostriatal projections in reptiles: A tract-tracing study in the lizardPodarcis hispanica

2004

Whereas the lacertilian anterior dorsal ventricular ridge contains unimodal sensory areas, its posterior part (PDVR) is an associative center that projects to the hypothalamus, thus being comparable to the amygdaloid formation. To further understand the organization of the reptilian cerebral hemispheres, we have used anterograde and retrograde tracing techniques to study the projections from the PDVR and adjoining areas (dorsolateral amygdala, DLA; deep lateral cortex, dLC; nucleus sphericus, NS) to the striatum in the lizard Podarcis hispanica. This information is complemented with a detailed description of the organization of the basal telencephalon of Podarcis. The caudal aspect of the d…

biologyCerebrumGeneral NeuroscienceVentral striatumPodarcisAnatomyStriatumNucleus accumbensbiology.organism_classificationRetrograde tracingPodarcis hispanicamedicine.anatomical_structurenervous systemmedicineNeuroscienceBasolateral amygdalaJournal of Comparative Neurology
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Distribution of corticotropin-releasing factor-immunoreactive neurons in the central nervous system of the domestic chicken and Japanese quail

2004

In birds, as in mammals, corticotropin-releasing factor (CRF) is present in a number of extrahypothalamic brain regions, indicating that CRF may play a role in physiological and behavioral responses other than the control of adrenocorticotropin hormone release by the pituitary. To provide a foundation for investigation of the roles of CRF in the control of avian behavior, the distribution of CRF immunoreactivity was determined throughout the central nervous system of the domestic chicken (Gallus domesticus) and Japanese quail (Coturnix japonica). The distribution of CRF-immunoreactive (-ir) perikarya and fibers in the chicken and quail brain was found to be more extensive than previously re…

endocrine systemmedicine.medical_specialtyanimal structuresBiologyNucleus accumbensReticular formationAmygdala03 medical and health sciences0302 clinical medicineExtended amygdalaInternal medicinebiology.animalmedicine030304 developmental biology0303 health sciencesCerebrumGeneral Neurosciencebiology.organism_classificationCoturnixQuailStria terminalisEndocrinologymedicine.anatomical_structurenervous systemNeurosciencehormones hormone substitutes and hormone antagonists030217 neurology & neurosurgeryJournal of Comparative Neurology
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The Role of the Amygdala in the Extinction of Conditioned Fear

2006

The amygdala has long been known to play a central role in the acquisition and expression of fear. More recently, convergent evidence has implicated the amygdala in the extinction of fear as well. In rodents, some of this evidence comes from the infusion of drugs directly into the amygdala and, in particular, into the basolateral complex of the amygdala, during or after extinction learning. In vivo electrophysiology has identified cellular correlates of extinction learning and memory in the lateral nucleus of that structure. Human imaging experiments also indicate that amygdaloid activity correlates with extinction training. In addition, some studies have directly identified changes in mole…

medicine.medical_treatmentConditioning ClassicalCentral nervous systemReceptors N-Methyl-D-AspartateAmygdalaExtinction PsychologicalCannabinoid Receptor ModulatorsBasal gangliamedicineAnimalsBiological PsychiatryFear processing in the brainFearsocial sciencesExtinction (psychology)AmygdalaEndocannabinoid systemhumanitiesmedicine.anatomical_structurenervous systemCalcium ChannelsCannabinoidPsychologyNeurosciencepsychological phenomena and processesBasolateral amygdalaBiological Psychiatry
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The medial amygdala as a key neural centre in maternal aggression: genetic, neural and behavioural analyses

2019

In rodents, as macrosmatic animals, chemosensory processing plays an instrumental role in guiding the expression of social, sexual and maternal behaviours. Social odours and pheromones are processed by the main and the accessory olfactory systems, which information converge mainly in the medial amygdala (Me). The Me, in turn, plays a central role in the vomeronasal–sensorimotor integration that leads to specific behavioural responses such as the above-mentioned social and maternal behaviours. Maternal behaviour comprises physiological and behavioural adaptations that help the dams to successfully raise their offspring. This behaviour is expressed in a wide range of vertebrate species and ca…

neuroscience:CIENCIAS DE LA VIDA::Neurociencias::Neurofisiología [UNESCO]prolactinmaternal behaviour:CIENCIAS DE LA VIDA::Etología::Animal [UNESCO]UNESCO::CIENCIAS DE LA VIDA::Etología::Animalmaternal aggressionUNESCO::CIENCIAS DE LA VIDA::Neurociencias::Neurofisiologíamedial amygdala
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Amygdaloid projections to the ventral striatum in mice: direct and indirect chemosensory inputs to the brain reward system

2011

Rodents constitute good models for studying the neural basis of socio-sexual behaviour. Recent findings in mice have revealed the molecular identity of the some pheromonal molecules triggering intersexual attraction. However, the neural pathways mediating this basic socio-sexual behaviour remain elusive. Since previous work indicates that the dopaminergic tegmento-striatal pathway is not involved in pheromone reward, the present report explores alternative pathways linking the vomeronasal system with the tegmento-striatal system (the limbic basal ganglia) by means of tract-tracing experiments studying direct and indirect projections from the chemosensory amygdala to the ventral striato-pall…

nucleus accumbensolfactory tubercleNeuroscience (miscellaneous)emotional brainNucleus accumbensAmygdalastriatal cell bridgeslcsh:RC321-571lcsh:QM1-695Cellular and Molecular NeuroscienceBasal gangliamedicineislands of Callejalcsh:Neurosciences. Biological psychiatry. NeuropsychiatryOriginal Researchchemosensory amygdalaOlfactory tubercleVentral striatumlcsh:Human anatomyRetrograde tracingmedicine.anatomical_structureIslands of CallejaAnatomyPsychologyIslands of CallejaNeuroscienceBasolateral amygdalaNeuroscience
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Motherhood‐induced gene expression in the mouse medial amygdala: Changes induced by pregnancy and lactation but not by pup stimuli

2021

During lactation, adult female mice display aggressive responses toward male intrud-ers, triggered by male- derived chemosensory signals. This aggressive behavior is not shown by pup- sensitized virgin females sharing pup care with dams. The genetic mechanisms underlying the switch from attraction to aggression are unknown. In this work, we investigate the differential gene expression in lactating females ex-pressing maternal aggression compared to pup- sensitized virgin females in the me-dial amygdala (Me), a key neural structure integrating chemosensory and hormonal information. The results showed 197 genes upregulated in dams, including genes encoding hormones such as prolactin, growth h…

prolactinmedicine.medical_specialtyGene ExpressionNeuropeptideBiologyReceptors OdorantBiochemistryMiceVomeronasal receptorPregnancyvomeronasal amygdalaInternal medicineLactationGene expressionGeneticsmedicineAnimalsLactationGalaninMaternal BehaviorRNA- SeqMolecular Biologyreproductive and urinary physiologyaggressionAmygdalaHormonesProlactinEndocrinologymedicine.anatomical_structureAnimals NewbornOxytocinModels AnimalFemaleVomeronasal OrgantranscriptomeBiotechnologymedicine.drugHormoneThe FASEB Journal
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