Search results for "Cerebral Cortex"

showing 10 items of 529 documents

Temporal refinement of sensory-evoked activity across layers in developing mouse barrel cortex.

2019

Rhythmic whisking behavior in rodents fully develops during a critical period about 2 weeks after birth, in parallel with the maturation of other sensory modalities and the onset of exploratory locomotion. How whisker-related sensory processing develops during this period in the primary somatosensory cortex (S1) remains poorly understood. Here, we characterized neuronal activity evoked by single- or dual-whisker stimulation patterns in developing S1, before, during and after the occurrence of active whisking. Employing multi-electrode recordings in all layers of barrel cortex in urethane-anesthetized mice, we find layer-specific changes in multi-unit activity for principal and neighboring b…

Maleanimal structuresStimulationSensory systemStimulus (physiology)Somatosensory system03 medical and health sciencesMice0302 clinical medicineEvoked Potentials SomatosensorymedicinePremovement neuronal activityAnimals030304 developmental biologyNeurons0303 health sciencesNeuronal PlasticityChemistryGeneral NeuroscienceWhisking in animalsSomatosensory CortexBarrel cortexmedicine.anatomical_structureCerebral cortexVibrissaeFemaleNeuroscience030217 neurology & neurosurgeryThe European journal of neuroscienceREFERENCES
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A basal ganglia-like cortical-amygdalar-hypothalamic network mediates feeding behavior.

2020

International audience; The network connecting the insular cortex, the central nucleus of the amygdala, and a caudal hypothalamic nuclear complex including the parasubthalamic nucleus (PSTN) is of interest due to its role in controlling feeding behavior. Here, we show that the organization of this network is similar to that of the basal ganglia network, implying that both fit within a simplified structural plan of the forebrain. Then, we demonstrate that the PSTN complex modulates behavior in response to hedonic factors normally inducing a “reward effect.” The PSTN complex is involved in a “non-feed” response equivalent of a “non-reward” evaluation: “I don’t want to consume this food, recog…

Malecentral amygdala nucleusLateral hypothalamusHypothalamusBiologyInsular cortexIndirect pathway of movementAmygdalaBasal GangliaRats Sprague-Dawley03 medical and health sciencesMice0302 clinical medicineSubthalamic NucleusBasal gangliaNeural PathwaysmedicineAnimals030304 developmental biologyCerebral CortexNeurons0303 health sciencesMultidisciplinary[SDV.NEU.PC]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/Psychology and behaviorBehavior AnimalCentral nucleus of the amygdalaCentral Amygdaloid NucleusFeeding BehaviorBiological SciencesRatsSubthalamic nucleusmedicine.anatomical_structureOlfactory CortexHypothalamusinsular cortexModels Animal[SDV.NEU]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC][SDV.AEN]Life Sciences [q-bio]/Food and NutritionNeuroscience030217 neurology & neurosurgeryProceedings of the National Academy of Sciences of the United States of America
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Characterization of rodent pineal astrocytes by immunofluorescence microscopy using a monoclonal antibody (J1-31).

1987

In previous studies pineal astrocytes have been characterized immunohistochemically mainly by use of antisera to glial fibrillary acidic protein. Because of the recent demonstration of this protein in non-astrocytic cells the question of its specificity as an astrocytic marker has been raised. A possible alternative tool for characterizing pineal astrocytes is the J1-31 monoclonal antibody, which is directed against a 30 000 dalton astrocytic protein clearly distinguishable from glial fibrillary acidic protein. Immunofluorescence microscopy of this antibody in the pineal gland of rat and guinea-pig revealed a staining pattern similar to that obtained by glial acidic fibrillary protein antis…

Maleendocrine systemHistologymedicine.drug_classGuinea PigsFluorescent Antibody TechniqueMonoclonal antibodyPineal GlandPathology and Forensic MedicinePineal glandmedicineAnimalsHumansAntiserumCerebral CortexGlial fibrillary acidic proteinbiologyAntibodies MonoclonalRats Inbred StrainsCell BiologyGFAP stainMolecular biologyStainingRatsmedicine.anatomical_structurenervous systemAstrocytesbiology.proteinImmunohistochemistryAntibodyGerbillinaeCell and tissue research
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Neuropeptide Y (NPY)-like immunoreactivity in peripheral and central nerve fibres of the golden hamster (Mesocricetus auratus) with special respect t…

1986

Inforimation on the ambient lighting conditions is conveyed from the retina to the pineal organ by a neuronal pathway involving the suprachiasmatic nucleus (SCN) which acts as a circadian pacemaker. In the hamster, circadian rhythms have been shown to be influenced by injection of neuropeptide Y (NPY) into the SCN. Since NPY-immunoreactive nerve fibres are present in the rat and guinea-pig pineal glands it appeared of interest to investigate the hamster pineal as part of the circadian rhythm generating/regulating system. For comparison kidney, small intestine and cerebral cortex were studied. Like in the other rodent species so far investigated only a few of the abundant sympathetic nerve f…

Maleendocrine systemmedicine.medical_specialtyHistologyHamsterFluorescent Antibody TechniqueKidneyPineal GlandPineal glandInternal medicineCricetinaeIntestine SmallmedicineAnimalsNeuropeptide YTissue DistributionCircadian rhythmMolecular BiologyCerebral CortexNeuronsbiologyMesocricetusSuprachiasmatic nucleusCell BiologyGeneral MedicineNeuropeptide Y receptorbiology.organism_classificationMedical Laboratory Technologymedicine.anatomical_structureEndocrinologynervous systemCerebral cortexAnatomyGeneral Agricultural and Biological Scienceshormones hormone substitutes and hormone antagonistsMesocricetusGolden hamsterHistochemistry
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Neuropeptide Y: distribution of immunoreactivity and quantitative analysis in diencephalic structures and cerebral cortex of dwarf hamsters under dif…

1995

The distribution of neuropeptide Y-like immunoreactivity (NPY-LI) was investigated by immunohistochemistry and radioimmunoassay (RIA) in the brain of the Djungarian hamster (Phodopus sungorus) held under either long or short photoperiods. In the diencephalic and telencephalic structures studied, distinct patterns of NPY-LI were basically consistent in male and female animals of both groups. NPY levels detected by RIA from tissue samples taken at six time points throughout the 24-hour cycle were in the range of 15-60 pmol/mg protein in the diencephalon or below 5 pmol/mg protein in cerebral cortex. In the diencephalon, immunoreactive structures were seen in the preoptic, peri- and paraventri…

Maleendocrine systemmedicine.medical_specialtyPhodopusEndocrinology Diabetes and MetabolismPhotoperiodThalamusHypothalamusRadioimmunoassayHamsterNeuropeptideBiologyCellular and Molecular NeuroscienceDiencephalonPineal glandEndocrinologyThalamusInternal medicineCricetinaemental disordersmedicineAnimalsNeuropeptide YTissue DistributionDiencephalonCerebral CortexEndocrine and Autonomic Systemsbiology.organism_classificationNeuropeptide Y receptorImmunohistochemistryhumanitiesPhodopusmedicine.anatomical_structureEndocrinologyCerebral cortexFemalehormones hormone substitutes and hormone antagonistsNeuroendocrinology
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Sex differences in GABAA receptor binding in rat brain measured by an improved in vitro binding assay.

1990

The distribution of GABAA receptor sites was studied in female and male rat brain by an improved in vitro binding assay using 3H-muscimol and carefully washed membrane fractions. The binding studies revealed a single class of binding sites exhibiting the properties of GABAA receptors. The specific binding of 3H-muscimol was measured in four brain areas: the preoptic brain area, mediobasal hypothalamus, corticomedial amygdala and cerebral cortex. The equilibrium dissociation constants (KD) ranged from 11.2 to 23.3 nM in diestrous females and from 13.1 to 50.4 nM in males, the maximal number of binding sites (Bmax) from 3290 to 10240 fmol/mg protein in females and from 5495 to 17449 fmol/mg p…

Maleendocrine systemmedicine.medical_specialtychemistry.chemical_compoundSex FactorsInternal medicinemedicineAnimalsBinding siteReceptorChemistryGABAA receptorMuscimolGeneral NeuroscienceCell MembraneBrainRats Inbred StrainsReceptors GABA-AGonadotropin secretionRatsPreoptic areaDissociation constantKineticsmedicine.anatomical_structureEndocrinologynervous systemMuscimolCerebral cortexOrgan SpecificityFemaleExperimental brain research
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State-dependent changes in auditory sensory gating in different cortical areas in rats.

2015

Sensory gating is a process in which the brain's response to a repetitive stimulus is attenuated; it is thought to contribute to information processing by enabling organisms to filter extraneous sensory inputs from the environment. To date, sensory gating has typically been used to determine whether brain function is impaired, such as in individuals with schizophrenia or addiction. In healthy subjects, sensory gating is sensitive to a subject's behavioral state, such as acute stress and attention. The cortical response to sensory stimulation significantly decreases during sleep; however, information processing continues throughout sleep, and an auditory evoked potential (AEP) can be elicite…

Malelcsh:MedicineSleep REMSensory systemElectroencephalographyStimulus (physiology)Non-rapid eye movement sleepRats Sprague-DawleyConditioning PsychologicalmedicineAnimalsWakefulnesslcsh:ScienceNeuroscience of sleepCerebral CortexMultidisciplinarySensory gatingSensory stimulation therapymedicine.diagnostic_testbusiness.industrylcsh:RElectroencephalographySensory Gatingmedicine.anatomical_structureAcoustic StimulationEvoked Potentials Auditorylcsh:QWakefulnessbusinessSleepNeuroscienceResearch ArticlePloS one
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Homogenous glycine receptor expression in cortical plate neurons and cajal-retzius cells of neonatal rat cerebral cortex

2004

Glycinergic membrane responses have been described in cortical plate neurons (CPn) and Cajal-Retzius cells (CRc) during early neocortical development. In order to elucidate the functional properties and molecular identity of glycine receptors in these two neuronal cell types, we performed whole-cell patch-clamp recordings and subsequent single-cell multiplex reverse transcriptase-polymerase chain reaction (RT-PCR) analyses on visually identified neurons in tangential and coronal slices as well as in situ hybridizations of coronal slices from neonatal rat cerebral cortex (postnatal days 0-4). In both CPn and CRc the glycinergic agonists glycine, beta-alanine and taurine induced inward curren…

Malemedicine.drug_classBiologyMembrane PotentialsGABA Antagonistschemistry.chemical_compoundReceptors GlycinemedicineAnimalsPatch clampRats WistarReceptorGlycine receptorCerebral CortexNeuronsDose-Response Relationship DrugGeneral NeuroscienceGene Expression Regulation DevelopmentalStrychnineBicucullineReceptor antagonistMolecular biologyRatsAnimals NewbornchemistryBiochemistryGlycineNMDA receptorExcitatory Amino Acid Antagonistsmedicine.drugNeuroscience
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Neural Correlates of Deficits in Pain-Related Affective Meaning Construction in Patients With Chronic Pain Disorder

2013

OBJECTIVE Psychological and neural mechanisms of the affective dimension of pain are known to be disturbed in patients with chronic pain disorder. The aim of this functional magnetic resonance imaging study was to assess the neurofunctional and behavioral measures underlying the ability to construct pain-related affective meaning in a painful situation by comparing 21 clinically and psychometrically well-characterized patients with persistent non-nociceptive somatoform pain with 19 healthy controls. METHODS The functional magnetic resonance imaging task involved viewing pictures depicting human hands and feet in different painful and nonpainful situations. Participants were asked to estimat…

Malemedicine.medical_specialtyAffective neuroscienceGyrus CinguliToronto Alexithymia ScaleAlexithymiaAdaptation PsychologicalInterview PsychologicalmedicineHumansAffective SymptomsSomatoform DisordersPsychiatryApplied PsychologyEmotional IntelligencePain MeasurementCerebral CortexAnalysis of VarianceBrain MappingPain disordermedicine.diagnostic_testDepressionBeck Depression InventoryChronic painPain PerceptionMiddle Agedmedicine.diseaseMagnetic Resonance ImagingPsychiatry and Mental healthCase-Control StudiesFemalePain catastrophizingSelf ReportChronic PainEmpathyFunctional magnetic resonance imagingPsychologyPhotic StimulationClinical psychologyPsychosomatic Medicine
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Nicotinic cholinoceptive neurons of the frontal cortex are reduced in Alzheimer's disease.

1991

The cellular distribution of nicotinic acetylcholine receptors was studied in the frontal cortex (area 10) of 1) Alzheimer patients and compared to 2) age-matched and 3) middle-aged controls using the monoclonal antibody WF 6 and an immunoperoxidase protocol. Statistical analysis revealed significant differences between the number of labeled neurons among all three groups tested (middle-aged controls greater than aged controls greater than Alzheimer cases). No differences were seen for cresyl violet-stained samples. These findings underline that the nicotinic receptor decrease found with radioligand binding may reflect a postsynaptic in addition to a presynaptic component.

Malemedicine.medical_specialtyAgingImmunocytochemistryBiologyReceptors NicotinicImmunoenzyme TechniquesPostsynaptic potentialAlzheimer DiseaseInternal medicineOxazinesmedicineHumansReceptorAcetylcholine receptorAgedNeuronsImmunoperoxidaseGeneral NeuroscienceAntibodies Monoclonalmedicine.diseaseBenzoxazinesFrontal Lobemedicine.anatomical_structureEndocrinologyNicotinic agonistCerebral cortexFemaleNeurology (clinical)Geriatrics and GerontologyAlzheimer's diseaseDevelopmental BiologyNeurobiology of aging
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