Search results for "medial cortex"

showing 10 items of 21 documents

Organization of Zinc-Containing Terminal Fields in the Brain of the LizardPodarcis hispanica: A Histochemical Study

1988

The Timm method for the histochemical detection of metals defines accurately many terminal fields in the brain of mammals. This pattern is based on the presence of zinc within the synaptic vesicles of some boutons. The aim of this study was to use the Timm method for the anatomical description of the brain in a reptile. In the telencephalon, zinc staining was observed in the inner layer of the medial cortex, the inner and outer layers of both dorsomedial and dorsal cortices, the inner layer of the lateral cortex pars anterior ventralis, the lateral cortex pars profunda, the intermediate and caudal aspects of the anterior dorsal ventricular ridge, the marginal layer and hilus of the nucleus …

Interpeduncular nucleusbiologyCerebrumMedial cortexGeneral NeuroscienceAnatomybiology.organism_classificationReticular formationPodarcis hispanicaStria terminalismedicine.anatomical_structureCortex (anatomy)medicineOlfactory tractJournal of Comparative Neurology
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Neuron regeneration reverses 3-acetylpyridine-induced cell loss in the cerebral cortex of adult lizards

1991

Systemic administration of the neurotoxin 3-acetylpyridine to adult lizards results in extensive loss of neurons in the medial cerebral cortex, other brain areas remaining largely unaffected. After the neurotoxic trauma, new cells are produced by mitotic division of cells in the ventricular wall. The new cells migrate along radial glial fibers and replace lost neurons in the medial cortex. Electron microscopic examination of cells labeled with [3H]thymidine confirms that the newly generated cells are neurons. Thus, neuron regeneration can occur in the cerebral cortex of adult lizards.

MaleTime FactorsPyridinesMedial cortexCentral nervous systemHippocampusBiologyCell MovementmedicineAnimalsNeurotoxinMolecular BiologyMitosisCerebral CortexNeuronsCell DeathStaining and LabelingGeneral NeuroscienceNeurogenesisLizardsNerve Regenerationmedicine.anatomical_structurenervous systemCerebral cortexNerve DegenerationFemaleNeurology (clinical)NeuronNeuroscienceCell DivisionDevelopmental BiologyBrain Research
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PSA-NCAM immunocytochemistry in the cerebral cortex and other telencephalic areas of the lizard Podarcis hispanica: differential expression during me…

2002

The lizard medial cortex, a region homologous to the mammalian dentate gyrus, shows postnatal neurogenesis and the surprising ability to replace its neurons after being lesioned specifically with the neurotoxin 3-acetylpyridine. As the polysialylated form of the neural cell adhesion molecule (PSA-NCAM) is expressed during neuronal migration and differentiation, we have studied its distribution in adult lizards and also during the lesion-regeneration process. In the medial cortex of control animals, many labeled fusiform somata, presumably corresponding to migratory neuroblasts, appeared in the inner plexiform layer. There were also scattered immunoreactive granule neurons in the cell layer.…

Medial cortexNeural Cell Adhesion Molecule L1Podarcis hispanicaHippocampusNerve FibersmedicineAnimalsCerebral CortexNeuronsbiologyGeneral NeuroscienceDentate gyrusNeurogenesisAge FactorsAntibodies MonoclonalLizardsbiology.organism_classificationInner plexiform layerImmunohistochemistryCell biologyNerve Regenerationmedicine.anatomical_structurenervous systemBromodeoxyuridineCerebral cortexSialic AcidsNeural cell adhesion moleculesense organsNeuroscienceNucleusBiomarkersCell DivisionThe Journal of comparative neurology
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Intrinsic organization of the medial cerebral cortex of the lizardLacerta pityusensis: A golgi study

1987

The morphology of cells and the organization of axons were studied in Golgi-Colonnier and toluidine blue stained preparations from the medial cerebral cortex of the lizard Lacerta pityusensis. In the medial cortex, six strata were distinguished between the superficial glial membrane and the ependyma. Strata I and II formed the outer plexiform layer, stratum III formed the cellular layer, and strata IV go VI the inner plexiform layer. The outer plexiform layer contained smooth bipolar neurons; their dendrites were oriented anteroposteriorly and their axons were directed towards the posterior zone of the brain. Five neuronal types were observed in the cellular layer. The spinous pyramidal neu…

Medial cortexOuter plexiform layerHippocampusAnatomyBiologyInner plexiform layermedicine.anatomical_structurenervous systemCerebral cortexmedicineAnimal Science and Zoologysense organsNeuronAxonEpendymaDevelopmental BiologyJournal of Morphology
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Reactive neurogenesis during regeneration of the lesioned medial cerebral cortex of lizards

1995

Abstract This study reports that lesion of the adult lizard medial cortex (lizard hipocampal fascia dentata) induces a short period of intensive neurogenesis which we have termed reactive neurogenesis; a cell proliferation event that occurs in the subjacent ependyma. Specific lesion of the medial cortex was achieved by intraperitoneal injection of the neurotoxin 3-acetylpyridine and proliferating cells were detected using tritiated thymidine or 5-bromodeoxiuridine pulse labelling. After lesion, granule neurons in the lizard medial cortex cell layer appeared pyknotic and died; they were then removed and progressively replaced by a set of new neurons. These neurons were mostly generated from …

Pathologymedicine.medical_specialtyPyridinesMedial cortexNeurotoxinsPodarcis hispanicaLesionNeuroblastmedicineAnimalsCerebral CortexbiologyGeneral NeuroscienceNeurogenesisLizardsDNAAnatomybiology.organism_classificationImmunohistochemistryNerve RegenerationMicroscopy Electronmedicine.anatomical_structureCerebral cortexAutoradiographyFascia dentatamedicine.symptomEpendymaCell DivisionNeuroscience
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Transitory disappearance of microglia during the regeneration of the lizard medial cortex

1994

In normal lizards, microglial cells populate the medial cortex (a zone homologous to the hippocampal fascia dentata), with a preferential distribution along the border between the granular cell layer and the plexiform layers. Intraperitoneal injection of the neurotoxin 3-acetylpyridine (3AP) induces a selective lesion in the medial cortex with a rapid degeneration of the granular layer and its zinc-enriched axonal projection. Within 6-8 weeks, the granular layer is, however, re- populated by a new set of neurons generated in the subjacent ependyma and the cell debris is removed. The aim of this study was to determine to what extent microglia were involved in the scavenging processes during …

Pathologymedicine.medical_specialtyPyridinesMedial cortexPopulationHippocampusGranular layerHippocampal formationBiologyHippocampusCellular and Molecular NeurosciencePhagocytosisCortex (anatomy)medicineAnimalseducationeducation.field_of_studyHistocytochemistryLizardsAnatomyAcid Anhydride HydrolasesNerve RegenerationMicroscopy Electronmedicine.anatomical_structureNeurologyNeurogliaFascia dentataMicrogliaGlia
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CRMP-4 expression in the adult cerebral cortex and other telencephalic areas of the lizard Podarcis hispanica.

2002

The control of neuritogenesis is crucial for the development, maturation and regeneration of the nervous system. The collapsin response-mediated protein 4 (CRMP-4) is a member of a family of proteins that are involved in neuronal differentiation and axonal outgrowth. In rodents, this protein is expressed in recently generated neurons such as some granule neurons of the dentate gyrus, as well as in certain differentiated neurons undergoing neurite outgrowth or synaptogenesis during adulthood. Since CRMP-4 protein appears to be highly conserved throughout the evolutionary scale, we have used immunocytochemistry to study its distribution in the lizard cerebral cortex. We have found pronounced …

TelencephalonNeuriteMedial cortexGrowth ConesSynaptogenesisNerve Tissue ProteinsPodarcis hispanicaEvolution MolecularDevelopmental NeurosciencemedicineAnimalsCerebral CortexbiologyDentate gyrusStem CellsNeurogenesisCell DifferentiationLizardsbiology.organism_classificationImmunohistochemistrymedicine.anatomical_structurenervous systemBromodeoxyuridineCerebral cortexDentate GyrusNeuroscienceNucleusCell DivisionDevelopmental BiologyBrain research. Developmental brain research
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Interhemispheric connections through the pallial commissures in the brain ofPodarcis hispanicaandGallotia stehlinii(Reptilia, Lacertidae)

1990

The cells-of-origin and the mode and site of termination of the interhemispheric connections passing through the anterior and posterior pallial commissures in the telencephalon of two lizards (Podarcis hispanica and Gallotia stehlinii) were investigated by studying the anterograde and retrograde transport of unilaterally injected horseradish peroxidase. The commissural projections arise mainly from pyramidal cells in the medial, dorsomedial, and dorsal cortices (medial subfield). Additionally some non-pyramidal neurons in the medial and dorsal cortices contribute to the commissural system. Medial cortex neurons project to the contralateral anterior septum through the anterior pallial commis…

biologyCerebrumMedial cortexAnatomyHippocampal formationCommissurebiology.organism_classificationPodarcis hispanicamedicine.anatomical_structureCortex (anatomy)Cerebral hemispheremedicineAxoplasmic transportAnimal Science and ZoologyDevelopmental BiologyJournal of Morphology
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Neuronal circuitry in the medial cerebral cortex of lizards

1997

The medial cortex of lizards is a simple three-layered brain region displaying many characteristics which parallel the hippocampal fascia dentata of mammals. Its principal neurons form a morphologically diverse population, partly as a result of the prominent continuous growth of this nervous centre. By using the classical Golgi impregnation method we describe here the morphology of the principal neurons (8 types) and the short-axon interneurons (18 types) populating the medial cortex of Podarcis hispanica as well as the connections between them.

biologyCerebrumMedial cortexOuter plexiform layerHippocampal formationbiology.organism_classificationPodarcis hispanicaNeuronal circuitrymedicine.anatomical_structurenervous systemCerebral cortexmedicineFascia dentataNeuroscience
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Projections from the medial cortex in the brain of lizards: correlation of anterograde and retrograde transport of horseradish peroxidase with Timm s…

1988

Efferent projections of the medial cortex of the lizards Podarcis hispanica and Gallotia stehlinii were studied by examining the transport of horseradish peroxidase; results were correlated with those from Timm-stained sections. Two efferent systems were found. The first reaches the distal part of the outer plexiform layer in the medial, dorsomedial, and dorsal cortices, i.e., zones that are negative to Timm staining, and possibly originates from horizontal fusiform neurons. The second reaches the Timm-positive zones in the cortex and septum and is topographically arranged: the vertical portion of the intermediate and caudal medial cortex and the entire rostral medial cortex project to the …

genetic structuresMedial cortexEfferentHippocampusOuter plexiform layerPodarcis hispanicaCortex (anatomy)Neural PathwaysmedicineAnimalsHorseradish PeroxidaseCerebral CortexBrain MappingStaining and LabelingbiologyHistocytochemistryGeneral NeuroscienceLizardsAnatomybiology.organism_classificationInner plexiform layerZincmedicine.anatomical_structurenervous systemMetalsCerebral cortexsense organs
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