Search results for "Forebrain"

showing 10 items of 66 documents

Rapid, reproducible transduction of select forebrain regions by targeted recombinant virus injection into the neonatal mouse brain

2009

Viral vectors can mediate long-term gene expression in different regions of the brain. Recombinant adeno-associated virus (rAAV) and Lenti virus (LV) have both gained prominence due to their ability to achieve specific transduction of various neuronal populations. Whilst widespread gene delivery has been obtained by targeted injection of rAAV in various brain structures, LV has also been utilized for infection of stem cell populations for cell lineage tracing. Both viral vector systems are most commonly used for gene delivery in mature brains, but the great potential of somatic gene delivery into the neonate brain has not been systematically exploited. Here we provide a systematic guideline…

Rostral migratory streamvirusesGenetic VectorsSubventricular zoneMice TransgenicGene deliveryBiologyRecombinant virusInjectionsViral vectorMiceTransduction (genetics)ProsencephalonNeuroblastTransduction GeneticmedicineAnimalsTissue DistributionNeuronsGeneral NeuroscienceDependovirusMolecular biologyRecombinant ProteinsMice Inbred C57BLmedicine.anatomical_structureAnimals NewbornGene TargetingForebrainJournal of Neuroscience Methods
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CB(1) signaling in forebrain and sympathetic neurons is a key determinant of endocannabinoid actions on energy balance

2010

The endocannabinoid system (ECS) plays a critical role in obesity development. The pharmacological blockade of cannabinoid receptor type 1 (CB(1)) has been shown to reduce body weight and to alleviate obesity-related metabolic disorders. An unsolved question is at which anatomical level CB(1) modulates energy balance and the mechanisms involved in its action. Here, we demonstrate that CB(1) receptors expressed in forebrain and sympathetic neurons play a key role in the pathophysiological development of diet-induced obesity. Conditional mutant mice lacking CB(1) expression in neurons known to control energy balance, but not in nonneuronal peripheral organs, displayed a lean phenotype and res…

Sympathetic Nervous SystemPhysiologymedicine.medical_treatmentHUMDISEASEFluorescent Antibody TechniqueBody TemperatureMice0302 clinical medicineReceptor Cannabinoid CB1Cannabinoid receptor type 1ReceptorIn Situ HybridizationMice Knockout0303 health sciencesReverse Transcriptase Polymerase Chain ReactionCB(1)ThermogenesisEndocannabinoid systemOBESITYCB1 knock outlipids (amino acids peptides and proteins)CB(1); CANNABINOID RECEPTOR; OBESITY; ENDOCANNABINOID SYSTEM; METABOLIC DISORDERSSignal Transductionmedicine.medical_specialtyforebrainImmunoblottingCitrate (si)-SynthaseIn situ hybridizationHyperphagiaBiologyDNA MitochondrialModels BiologicalENDOCANNABINOID SYSTEMMOLNEURONO03 medical and health sciencesProsencephalonLipid oxidationInternal medicineMETABOLIC DISORDERSmedicineAnimalsMolecular BiologyCANNABINOID RECEPTOR030304 developmental biologyAnalysis of VarianceX-Ray MicrotomographyCell Biologyendocannabinoidenergy balanceEndocrinologynervous systemsympathetic neuronsForebrainCannabinoidEnergy Metabolismendocannabinoid; forebrain; sympathetic neurons; energy balance; CB1 knock outNeuroscienceThermogenesis030217 neurology & neurosurgery
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Neurogenesis and Neuronal Regeneration in the Adult Reptilian Brain

2002

Evidence accumulated over the last few decades demonstrates that all reptiles examined thus far continue to add neurons at a high rate and in many regions of the adult brain. This so-called adult neurogenesis has been described in the olfactory bulbs, rostral forebrain, all cortical areas, anterior dorsal ventricular ridge, septum, striatum, nucleus sphericus, and cerebellum. The rate of neuronal production varies greatly among these brain areas. Moreover, striking differences in the rate and distribution of adult neurogenesis have been noted among species. In addition to producing new neurons in the adult brain, lizards, and possibly other reptiles as well, are capable of regenerating larg…

TelencephalonAgingCerebellumRostral migratory streamStriatumBiologyBehavioral NeuroscienceSpecies SpecificityDevelopmental NeuroscienceCell MovementmedicineAnimalsNeuronsCerebrumStem CellsNeurogenesisBrainReptilesCell DifferentiationNerve Regenerationmedicine.anatomical_structurenervous systemForebrainStem cellEpendymaNeurogliaNeuroscienceCell DivisionBrain, Behavior and Evolution
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Selective Adhesion of Cells from Different Telencephalic Regions

1996

AbstractWe asked whether specification of different regions of the rodent and avian telencephalon during development involved the acquisition of differential adhesive properties. Cells from different regions were aggregated in a short-term aggregation assay, and their segregation was analyzed. Both neurons and precursor cells from cortex segregate from striatal cells at early, but not later, stages, whereas cells from rodent neocortex and hippocampus segregated only during later stages. Segregation was abolished when Ca2+-dependent but not Ca2+-independent adhesion molecules were selectively removed. Thus, selective adhesion appears to be a conserved mechanism that restricts cellular mixing…

TelencephalonCell divisionNeuroscience(all)HippocampusBiology03 medical and health sciences0302 clinical medicinemedicineCell AdhesionAnimalsCell adhesion030304 developmental biology0303 health sciencesNeocortexCell adhesion moleculeCerebrumGeneral NeuroscienceImmunohistochemistryCortex (botany)Cell biologyRatsmedicine.anatomical_structureBiochemistrynervous systemRats Inbred LewForebrain030217 neurology & neurosurgeryCell DivisionNeuron
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Association of basal forebrain volumes and cognition in normal aging.

2013

The basal forebrain cholinergic system (BFCS) is known to undergo moderate neurodegenerative alterations during normal aging and severe atrophy in Alzheimer's disease (AD). It has been suggested that functional and structural alterations of the BFCS mediate cognitive performance in normal aging and AD. But, it is still unclear to what extend age-associated cognitive decline can be related to BFCS in normal aging. We analyzed the relationship between BFCS volume and cognition using MRI and a comprehensive neuropsychological test battery in a cohort of 43 healthy elderly subjects spanning the age range from 60 to 85 years. Most notably, we found significant associations between general intell…

TelencephalonMaleAgingCognitive NeuroscienceIntelligenceExperimental and Cognitive PsychologyNeuropsychological TestsNucleus basalisWhite matterCohort StudiesBehavioral NeuroscienceExecutive FunctionAtrophyCognitionMemorymedicineHumansAttentionEffects of sleep deprivation on cognitive performanceddc:610Cognitive declineAgedAged 80 and overIntelligence TestsBasal forebrainmedicine.diagnostic_testCognitionNeuropsychological testOrgan SizeMiddle Agedmedicine.diseaseMagnetic Resonance Imagingmedicine.anatomical_structureLinear ModelsEducational StatusFemaleanatomy & histology [Telencephalon]PsychologyNeuroscience
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Natural selection constrains personality and brain gene expression differences in Atlantic salmon (Salmo salar).

2015

ABSTRACT In stream-spawning salmonid fishes there is a considerable variation in the timing of when fry leave the spawning nests and establish a feeding territory. The timing of emergence from spawning nests appears to be related to behavioural and physiological traits, e.g. early emerging fish are bolder and more aggressive. In the present study, emerging Atlantic salmon (Salmo salar L.) alevins were sorted into three fractions: early, intermediate and late emerging. At the parr stage, behaviour, stress responses, hindbrain monoaminergic activity and forebrain gene expression were explored in fish from the early and late emerging fractions (first and last 25%). The results show that when s…

Time FactorsPhysiologymedia_common.quotation_subjectSalmo salarZoologyGene ExpressionNerve Tissue ProteinsAquatic ScienceEpendyminmedicineJuvenileAnimalsSalmoSelection GeneticMolecular BiologyEcology Evolution Behavior and Systematicsmedia_commonNatural selectionbiologyBehavior AnimalAggressionEcologyBoldnessBrainAquatic animalbiology.organism_classificationReceptors GABA-AInsect ScienceForebrainReceptor Serotonin 5-HT1Abiology.proteinAnimal Science and Zoologymedicine.symptomStress PsychologicalThe Journal of experimental biology
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Developmental dynamics of PAFAH1B subunits during mouse brain development.

2012

Platelet-activating factor (PAF) mediates an array of biological processes in the mammalian central nervous system as a bioactive lipid messenger in synaptic function and dysfunction (plasticity, memory, and neurodegeneration). The intracellular enzyme that deacetylates the PAF (PAFAH1B) is composed of a tetramer of two catalytic subunits, ALPHA1 (PAFAH1B3) and ALPHA2 (PAFAH1B2), and a regulatory dimer of LIS1 (PAFAH1B1). We have investigated the mouse PAFAH1B subunit genes during brain development in normal mice and in mice with a hypomorphic allele for Lis1 (Lis1/sLis1; Cahana et al. [2001] Proc Natl Acad Sci U S A 98:6429–6434). We have analyzed quantitatively (by means of real-time poly…

Transcription GeneticProtein subunitNeurogenesisCentral nervous systemHindbrainIn situ hybridizationBiologyReal-Time Polymerase Chain Reaction03 medical and health sciencesMice0302 clinical medicineGene expressionmedicineAnimalsIn Situ Hybridization030304 developmental biologyRegulation of gene expression0303 health sciencesCerebrumGeneral NeuroscienceBrainGene Expression Regulation DevelopmentalMolecular biologyImmunohistochemistry3. Good healthMice Inbred C57BLProtein Subunitsmedicine.anatomical_structureForebrain1-Alkyl-2-acetylglycerophosphocholine EsteraseTranscriptomeMicrotubule-Associated Proteins030217 neurology & neurosurgery
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Resolving the transcriptional transitions associated with oligodendrocyte generation from adult neural stem cells by single cell sequencing

2020

AbstractThe subventricular zone (SVZ) is the largest neurogenic niche in the adult forebrain. Notably, neural stem cells (NSCs) of the SVZ generate not only neurons, but also oligodendrocytes, the myelin-forming cells of the central nervous system. Transcriptomic studies have provided detailed knowledge of the molecular events that regulate neurogenesis, but little is understood about adult oligodendrogenesis from SVZ-NSCs. To address this, we performed in-depth single-cell transcriptomic analyses to resolve the major differences in neuronal and oligodendroglial lineages derived from the adult SVZ. A hallmark of adult oligodendrogenesis was the stage-specific expression of transcriptional m…

Transcriptomemedicine.anatomical_structureLineage (genetic)nervous systemNeurogenesisForebrainmedicineGene regulatory networkSubventricular zoneBiologyOligodendrocyteNeural stem cellCell biology
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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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Ventilatory conditioning by self-stimulation in rats: A pilot study

1994

International audience; This article describes an experimental attempt to condition breathing pattern in rats. In this experiment, a freely moving rat was first rewarded by an electrical stimulation of the medial forebrain bundle whenever inspiratory duration (TI) exceeded 300 ms. A bidirectional control was then used: TIs longer than 400 ms were rewarded, and then TIs shorter than 300 ms were rewarded. The frequency of TIs longer than 300 ms increased when this event was rewarded, further increased when TIs above 400 ms were rewarded, and decreased during reversal conditioning (TI < 300 ms). At the beginning of the experiment, stimulation caused increased arousal and motor activity, but af…

[SDV.NEU.NB]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/NeurobiologyPilot ProjectsStimulationMESH: Rats Sprague-Dawley030204 cardiovascular system & hematologyRats Sprague-Dawley[ SDV.NEU.SC ] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/Cognitive SciencesSelf Stimulation0302 clinical medicineConditioning PsychologicalMESH: AnimalsMedial forebrain bundleMESH: Self StimulationApplied PsychologyMESH : Reinforcement (Psychology)[SDV.NEU.PC]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/Psychology and behaviorMESH : Pilot ProjectsMESH : RatsRespiration[SDV.NEU.SC]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/Cognitive SciencesMESH: Reinforcement (Psychology)Quiet wakefulnessNeuropsychology and Physiological Psychologymedicine.anatomical_structure[ SDV.NEU.NB ] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/NeurobiologyAnesthesiaBreathingGeneral Agricultural and Biological SciencesPsychologyReinforcement Psychologypsychological phenomena and processesMESH: RatsMESH : Self StimulationCentral nervous systemArousal[ SDV.NEU.PC ] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/Psychology and behavior03 medical and health sciencesmedicineAnimalsMESH: RespirationMESH: Conditioning (Psychology)MESH: Pilot ProjectsMESH : Rats Sprague-DawleyRatsMESH : RespirationBrain stimulationConditioningMESH : Animals030217 neurology & neurosurgeryMESH : Conditioning (Psychology)Biofeedback and Self-Regulation
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