Search results for "campus"

showing 10 items of 667 documents

The Actual Adoption and Use of Mobile Apps : The Case of a Higher Education Context

2020

Mobile applications have gained wide acceptance in several sectors, including eCommerce and education. In higher education, mobile apps are being used not only for mobile learning but also for creating smart campus environments in which physical campuses are augmented with digital services. Mobile apps for smart campus initiatives usually have several features that students and educators are expected to adopt and use. However, although prior studies have investigated the adoption of mobile apps, most of such studies are on the user's intention to use or continue using mobile apps, leaving gaps in our understanding of how actual use occurs. Drawing on a case study of a mobile app for a smart…

IT usekampukseteducationsmart campuskäyttöpost-adoptionhigher educationmental disorderskorkea-asteen koulutusmobiilisovelluksetälytekniikkaIT adoptionomaksuminenmobile app adoptionIT continuance
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Cross-Border Higher Education : The Expansion of International Branch Campuses

2022

AbstractThe international expansion of higher education has intensified in recent decades with a rapidly growing number of international branch campuses appearing on the scene. This study investigates the economic, cultural and institutional, and educational determinants of transnational higher education on both the extensive margin (number of international branch campuses), and the intensive margin (the total number of educational programmes offered). Using the gravity equation, we applied fixed-effect empirical methods to a panel dataset that combined and extended the raw data from campuses and master’s programmes in 33 source countries and 76 host countries in the period from 1948 to 201…

International branch campusesEducació internacionalHigher educationEnsenyament universitariGravity equationForeign direct investmentArticleEducation
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Lack of APP and APLP2 in GABAergic Forebrain Neurons Impairs Synaptic Plasticity and Cognition.

2020

AbstractAmyloid-β precursor protein (APP) is central to the pathogenesis of Alzheimer’s disease, yet its physiological functions remain incompletely understood. Previous studies had indicated important synaptic functions of APP and the closely related homologue APLP2 in excitatory forebrain neurons for spine density, synaptic plasticity, and behavior. Here, we show that APP is also widely expressed in several interneuron subtypes, both in hippocampus and cortex. To address the functional role of APP in inhibitory neurons, we generated mice with a conditional APP/APLP2 double knockout (cDKO) in GABAergic forebrain neurons using DlxCre mice. These DlxCre cDKO mice exhibit cognitive deficits i…

InterneuronCognitive NeuroscienceLong-Term PotentiationSpatial LearningHippocampusAction PotentialsInhibitory postsynaptic potentialHippocampusNesting Behavior03 medical and health sciencesCellular and Molecular NeuroscienceAmyloid beta-Protein PrecursorMice0302 clinical medicineCognitionProsencephalonAmyloid precursor proteinmedicineAnimalsGABAergic NeuronsCA1 Region Hippocampal030304 developmental biologySpatial MemoryMice Knockout0303 health sciencesNeuronal PlasticitybiologyPyramidal CellsExcitatory Postsynaptic PotentialsLong-term potentiationmedicine.anatomical_structurenervous systemInhibitory Postsynaptic PotentialsSynaptic plasticityForebrainExcitatory postsynaptic potentialbiology.proteinNeuroscience030217 neurology & neurosurgeryCerebral cortex (New York, N.Y. : 1991)
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A Golgi study of the short-axon interneurons of the cell layer and inner plexiform layer of the medial cortex of the lizardPodarcis hispanica

1997

The medial cortex of lizards is a three-layered brain region displaying cyto- and chemoarchitectonical, connectional, and ontogenetic characteristics that relate it to the hippocampal fascia dentata of mammals. Three interneuron types located in the cell layer and ten others in the inner plexiform layer (six in the juxtasomatic zone and four in the deep zone) are described in this study. The granuloid neurons, web-axon neurons, and deep-fusiform neurons lay within the cell layer. These neurons were scarce; they were probably gamma-aminobutyric acid (GABA)-, and parvalbumin-immunoreactive and presumably participated in feed forward as well as in feed back inhibition of the principal projecti…

InterneuronMedial cortexGeneral NeuroscienceHippocampusAnatomyHippocampal formationBiologybiology.organism_classificationInner plexiform layerPodarcis hispanicamedicine.anatomical_structurenervous systemmedicineFascia dentatasense organsAxonNeuroscienceThe Journal of Comparative Neurology
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Parvalbumin Interneurons and Perineuronal Nets in the Hippocampus and Retrosplenial Cortex of Adult Male Mice After Early Social Isolation Stress and…

2021

Both early life aversive experiences and intrinsic alterations in early postnatal neurodevelopment are considered predisposing factors for psychiatric disorders, such as schizophrenia. The prefrontal cortex and the hippocampus have protracted postnatal development and are affected in schizophrenic patients. Interestingly, similar alterations have been observed in the retrosplenial cortex (RSC). Studies in patients and animal models of schizophrenia have found alterations in cortical parvalbumin (PV) expressing interneurons, making them good candidates to study the etiopathology of this disorder. Some of the alterations observed in PV+ interneurons may be mediated by perineuronal nets (PNNs)…

Interneuronbiologysocial isolationPerineuronal netHippocampusNeurosciences. Biological psychiatry. NeuropsychiatryCell BiologyinterneuronHippocampal formationearly aversive experienceschizophreniaCellular and Molecular Neurosciencemedicine.anatomical_structureRetrosplenial cortexnervous systemparvalbuminmedicinebiology.proteinChromatin structure remodeling (RSC) complexPrefrontal cortexNeuroscienceParvalbuminNeuroscienceOriginal ResearchRC321-571Frontiers in Synaptic Neuroscience
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Calretinin/PSA-NCAM immunoreactive granule cells after hippocampal damage produced by kainic acid and DEDTC treatment in mouse.

2003

There is a dramatic increase in the number of lightly immunoreactive calretinin cells in the granular layer of the dentate gyrus of the mouse hippocampus 1 day after excitotoxic injury using kainic acid combined with the zinc chelator diethyldithiocarbamate. At 7 days after treatment, these cells are strongly immunoreactive for calretinin and for the polysialated form of the glycoprotein neural cell adhesion molecule (PSA-NCAM). The reexpression of calretinin and PSA-NCAM after treatment corresponds well with the loss of input from the damaged hilar mossy cells. These cells could be considered immature granule cells since they are immunoreactive to markers for immature cells such as PSA-NCA…

Kainic acidTime FactorsNeural Cell Adhesion Molecule L1Granular layerHippocampal formationHippocampuschemistry.chemical_compoundMiceS100 Calcium Binding Protein GExcitatory Amino Acid AgonistsAnimalsMolecular BiologyChelating AgentsNeuronsKainic AcidbiologyGeneral NeuroscienceDentate gyrusNeurogenesisDrug SynergismMolecular biologyImmunohistochemistryMicroscopy Electronnervous systemchemistryCalbindin 2Phosphopyruvate HydrataseImmunologybiology.proteinSialic AcidsNeural cell adhesion moleculeNeurology (clinical)NeuNCalretininDitiocarbDevelopmental BiologyBrain research
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Guanosine-Mediated Anxiolytic-Like Effect: Interplay with Adenosine A1 and A2A Receptors

2020

Acute or chronic administration of guanosine (GUO) induces anxiolytic-like effects, for which the adenosine (ADO) system involvement has been postulated yet without a direct experimental evidence. Thus, we aimed to investigate whether adenosine receptors (ARs) are involved in the GUO-mediated anxiolytic-like effect, evaluated by three anxiety-related paradigms in rats. First, we confirmed that acute treatment with GUO exerts an anxiolytic-like effect. Subsequently, we investigated the effects of pretreatment with ADO or A1R (CPA, CCPA) or A2AR (CGS21680) agonists 10 min prior to GUO on a GUO-induced anxiolytic-like effect. All the combined treatments blocked the GUO anxiolytic-like effect, …

LightPharmacologyAnxietySettore BIO/09 - FisiologiaHippocampuslcsh:Chemistrychemistry.chemical_compound0302 clinical medicineReceptorlcsh:QH301-705.5Spectroscopycaffeine0303 health sciencesBehavior AnimalRGeneral MedicineDarkness3. Good healthComputer Science ApplicationsadenosineCCPA[SDV.NEU]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]A<sub>1</sub>RCaffeineA1Rmedicine.drugReceptor Adenosine A2A1GuanosineCatalysisArticleInorganic Chemistry03 medical and health sciencesAmedicineAnimals[SDV.NEU] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]Physical and Theoretical ChemistryBinding site2AMolecular Biology030304 developmental biologyDose-Response Relationship DrugReceptor Adenosine A1behaviorOrganic ChemistryCell MembraneAntagonistAdenosineAdenosine receptorRatsguanosineA<sub>2A</sub>Rlcsh:Biology (General)lcsh:QD1-999chemistryA2AR030217 neurology & neurosurgery
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Optogenetically blocking sharp wave ripple events in sleep does not interfere with the formation of stable spatial representation in the CA1 area of …

2016

During hippocampal sharp wave/ripple (SWR) events, previously occurring, sensory inputdriven neuronal firing patterns are replayed. Such replay is thought to be important for plasticity-related processes and consolidation of memory traces. It has previously been shown that the electrical stimulation-induced disruption of SWR events interferes with learning in rodents in different experimental paradigms. On the other hand, the cognitive map theory posits that the plastic changes of the firing of hippocampal place cells constitute the electrophysiological counterpart of the spatial learning, observable at the behavioral level. Therefore, we tested whether intact SWR events occurring during th…

LightPhysiologylcsh:MedicineHippocampusTetrodesMiceAnimal Cells571 PhysiologyMedicine and Health Scienceslcsh:ScienceNeuronsLight PulsesBrain MappingNeuronal PlasticityPyramidal CellsPhysicsElectromagnetic RadiationBrainLaboratory EquipmentSignal Filteringsharp wave ripple eventesBioassays and Physiological AnalysisOptical EquipmentVacuum ApparatusPhysical SciencesEngineering and TechnologyFemaleCellular TypesAnatomyResearch ArticleGanglion CellsArchaeal ProteinsSpatial LearningEquipmentResearch and Analysis Methodsuni (lepotila)AnimalshippokampusCA1 Region HippocampalLaserslcsh:RCorrectionBiology and Life SciencesNeurophysiological AnalysisCell BiologyBrain WavesMice Inbred C57BLOptogeneticsCellular NeuroscienceSignal ProcessingExploratory Behavior570 Life sciences; biologylcsh:QPhysiological ProcessesSleepNeuroscience
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Neuronal activity triggers uptake of hematopoietic extracellular vesicles in vivo

2019

Communication with the hematopoietic system is a vital component of regulating brain function in health and disease. Traditionally, the major routes considered for this neuroimmune communication are by individual molecules such as cytokines carried by blood, by neural transmission, or, in more severe pathologies, by the entry of peripheral immune cells into the brain. In addition, functional mRNA from peripheral blood can be directly transferred to neurons via extracellular vesicles (EVs), but the parameters that determine their uptake are unknown. Using varied animal models that stimulate neuronal activity by peripheral inflammation, optogenetics, and selective proteasome inhibition of dop…

LipopolysaccharidesMaleGene ExpressionStimulationHippocampusBiochemistryStereotaxic Techniques0302 clinical medicineShort ReportsAnimal CellsMedicine and Health SciencesPremovement neuronal activityBiology (General)Routes of AdministrationNeurons0303 health sciencesBrain MappingKainic AcidBrainAnimal ModelsPeripheralCell biologyHaematopoiesisBioassays and Physiological AnalysisExperimental Organism SystemsHippocampus ; Yellow flourescent protein ; Intravenous injections ; Marker genes ; Gene expression ; Neurons ; Microglial cells ; OptogeneticsFemaleCellular TypesSignal TransductionProteasome Endopeptidase ComplexQH301-705.5Yellow Fluorescent ProteinMice TransgenicGlial CellsMouse ModelsStimulus (physiology)BiologyResearch and Analysis Methods03 medical and health sciencesExtracellular VesiclesImmune systemModel OrganismsIn vivoIntravenous InjectionsGeneticsAnimalsddc:610Molecular Biology TechniquesMolecular BiologyMicroglial Cells030304 developmental biologyInflammationPharmacologyMessenger RNABlood CellsUbiquitinDopaminergic NeuronsBiology and Life SciencesProteinsMarker GenesCell BiologyNeurophysiological AnalysisOptogeneticsLuminescent ProteinsCellular NeuroscienceAnimal Studies030217 neurology & neurosurgeryNeuroscience
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Cannabinoid CB1 Receptor Calibrates Excitatory Synaptic Balance in the Mouse Hippocampus

2015

The endocannabinoid system negatively regulates the release of various neurotransmitters in an activity-dependent manner, thereby influencing the excitability of neuronal circuits. In the hippocampus, cannabinoid type 1 (CB1) receptor is present on both GABAergic and glutamatergic axon terminals. CB1 receptor-deficient mice were previously shown to have increased hippocampal long-term potentiation (LTP). In this study, we have investigated the consequences of cell-type-specific deletion of the CB1 receptor on the induction of hippocampal LTP and on CA1 pyramidal cell morphology. Deletion of CB1 receptor in GABAergic neurons in GABA-CB1-KO mice leads to a significantly decreased hippocampal …

Long-Term PotentiationHippocampusHippocampal formationBiologyHippocampusSynaptic TransmissionMiceGlutamatergicReceptor Cannabinoid CB1medicineAnimalsAxonMice KnockoutNeuronal Plasticitymusculoskeletal neural and ocular physiologyGeneral NeuroscienceExcitatory Postsynaptic Potentialsfood and beveragesLong-term potentiationArticlesEndocannabinoid systemMice Inbred C57BLmedicine.anatomical_structurenervous systemSynapsesSynaptic plasticityGABAergiclipids (amino acids peptides and proteins)NeuroscienceThe Journal of Neuroscience
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