Search results for "POTENT"

showing 10 items of 3940 documents

Explicit behavioral detection of visual changes develops without their implicit neurophysiological detectability

2012

Change blindness is a failure of reporting major changes across consecutive images if separated, e.g., by a brief blank interval. Successful change detection across interrupts requires focal attention to the changes. However, findings of implicit detection of visual changes during change blindness have raised the question of whether the implicit mode is necessary for development of the explicit mode. To this end, we recorded the visual mismatch negativity (vMMN) of the event-related potentials (ERPs) of the brain, an index of implicit pre-attentive visual change detection, in adult humans performing an oddball-variant of change blindness flicker task. Images of 500 ms in duration were prese…

muutossokeuschange blindnessaivojen herätevasteetvisual mismatch negativitygenetic structuresflicker paradigmsense organsskin and connective tissue diseasespoikkeavuusnegatiivisuusevent-related potentialsoddball paradigm
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Event-related potentials reveal rapid registration of features of infrequent changes during change blindness

2010

Background. Change blindness refers to a failure to detect changes between consecutively presented images separated by, for example, a brief blank screen. As an explanation of change blindness, it has been suggested that our representations of the environment are sparse outside focal attention and even that changed features may not be represented at all. In order to find electrophysiological evidence of neural representations of changed features during change blindness, we recorded event-related potentials (ERPs) in adults in an oddball variant of the change blindness flicker paradigm. Methods. ERPs were recorded when subjects performed a change detection task in which the modified images w…

muutossokeuschange blindnessevent-related potentialherätevastesense organsskin and connective tissue diseases
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Mechanisms of cell death in canine parvovirus-infected cells provide intuitive insights to developing nanotools for medicine

2010

Jonna Nykky, Jenni E Tuusa, Sanna Kirjavainen, Matti Vuento, Leona GilbertNanoscience Center and Department of Biological and Environmental Science, University of Jyväskylä, FinlandAbstract: Viruses have great potential as nanotools in medicine for gene transfer, targeted gene delivery, and oncolytic cancer virotherapy. Here we have studied cell death mechanisms of canine parvovirus (CPV) to increase the knowledge on the CPV life cycle in order to facilitate the development of better parvovirus vectors. Morphological studies of CPV-infected Norden laboratory feline kidney (NLFK) cells and canine fibroma cells (A72) displayed characteristic apoptotic events. Apoptosis was f…

nekroosianimal diseasesvirusesGene ExpressionPharmaceutical ScienceApoptosisViral Nonstructural Proteinsnecrosis0302 clinical medicineInternational Journal of NanomedicineDrug DiscoveryCaspaseOriginal ResearchMembrane Potential MitochondrialOncolytic Virotherapy0303 health sciencesCell DeathbiologynanoparticleCell Cycleapoptosiscanine parvovirusCanine parvovirusGeneral MedicineFlow Cytometry3. Good healthNanomedicineCaspases030220 oncology & carcinogenesisvirotherapyProgrammed cell deathParvovirus CaninenanopartikkeliBiophysicsBioengineeringDNA FragmentationGene deliveryCell LineBiomaterials03 medical and health sciencesDogsMicroscopy Electron TransmissionAnimalsHumansVirotherapyapoptoosi030304 developmental biologyParvovirusOrganic Chemistrybiology.organism_classificationVirologyOncolytic viruskoiran parvovirusviroterapiaMicroscopy FluorescenceApoptosisCatsbiology.proteinDNA DamageHeLa CellsInternational Journal of Nanomedicine
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Enkephalin-containing interneurons are specialized to innervate other interneurons in the hippocampal CA1 region of the rat and guinea-pig

1998

Enkephalins are known to have a profound effect on hippocampal inhibition, but the possible endogenous source of these neuropeptides, and their relationship to inhibitory interneurons is still to be identified. In the present study we analysed the morphological characteristics of met-enkephalin-immunoreactive cells in the CA1 region of the rat and guinea-pig hippocampus, their coexistence with other neuronal markers and their target selectivity at the light and electron microscopic levels.  Several interneurons in all subfields of the hippocampus were found to be immunoreactive for met-enkephalin. In the guinea-pig, fibres arising from immunoreactive interneurons were seen to form a plexus …

nervous systemEnkephalinPostsynaptic potentialmusculoskeletal neural and ocular physiologyGeneral NeuroscienceVasoactive intestinal peptideHippocampusGABAergicHippocampal formationCalretininBiologyInhibitory postsynaptic potentialNeuroscienceEuropean Journal of Neuroscience
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Event-related potentials as a measure of speech cue processing in newborns with genetic risk for dyslexia

1999

newbornsprincipal component analysisconsonant differentiationbrain event related potentialsdevelopmental dyslexiaauditory processing
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Activation of Stainless Steel 316L Anode for Anion Exchange Membrane Water Electrolysis

2023

The increased emphasis on renewable energy has resulted in a surge of R&D efforts into hydrogen and battery research. The intensive electrochemical environment surrounding the anodic oxygen evolution reaction (OER) has plagued both the activity and stability of the catalytic layer, substrate and porous transport layer, ultimately affecting both these industries. Herein, we report the benefits of potential cycling (PC) a 316L stainless steel felt porous transport layer (PTL) for use in anion exchange membrane water electrolysis. The PC increased surface roughness and created a CrFe5Ni2-OxHy layer through the oxidation of iron as shown by SEM, EDS, XPS, XRD and Raman spectroscopy. Post-PC tes…

nianodeoxidationnifecr hydroxideporous transport layer316l stainless steelanion exchange membrane water electrolysisVDP::Teknologi: 500electrochemical impedance spectroscopyoxygen evolution reactionevolutionElectrochemistryelectrocatalystfilmspotential cycling
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Modulation of Human Motor Cortical Excitability and Plasticity by Opuntia Ficus Indica Fruit Consumption: Evidence from a Preliminary Study through N…

2022

Indicaxanthin (IX) from Opuntia Ficus Indica (OFI) has been shown to exert numerous biological effects both in vitro and in vivo, such as antioxidant, anti-inflammatory, neuro-modulatory activity in rodent models. Our goal was to investigate the eventual neuro-active role of orally assumed fruits containing high levels of IX at nutritionally-relevant amounts in healthy subjects, exploring cortical excitability and plasticity in the human motor cortex (M1). To this purpose, we applied paired-pulse transcranial magnetic stimulation and anodal transcranial direct current stimulation (a-tDCS) in basal conditions and followed the consumption of yellow cactus pear fruits containing IX or white ca…

non-invasive brain stimulationNeuronal PlasticityNutrition and DieteticsMotor CortexindicaxanthinSettore MED/37 - NeuroradiologiaOpuntiabrain foodEvoked Potentials MotorTranscranial Direct Current StimulationSettore BIO/09 - FisiologiaSettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)homeostatic plasticityTMSSettore BIO/10 - BiochimicaFruitCortical Excitabilitynon-invasive brain stimulation; TMS; a-tDCS; indicaxanthin; brain food; cortical excitability; homeostatic plasticitya-tDCSHumansSettore MED/26 - NeurologiaFood ScienceNutrients; Volume 14; Issue 22; Pages: 4915
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Parietal Cortex Connectivity as a Marker of Shift in Spatial Attention Following Continuous Theta Burst Stimulation

2021

Non-invasive brain stimulation is a useful tool to probe brain function and provide therapeutic treatments in disease. When applied to the right posterior parietal cortex (PPC) of healthy participants, it is possible to temporarily shift spatial attention and mimic symptoms of spatial neglect. However, the field of brain stimulation is plagued by issues of high response variability. The aim of this study was to investigate baseline functional connectivity as a predictor of response to an inhibitory brain stimulation paradigm applied to the right PPC. In fourteen healthy adults (9 female, aged 24.8 ± 4.0 years) we applied continuous theta burst stimulation (cTBS) to suppress activity in the …

non-invasive brain stimulationneuroplasticityCTBSPosterior parietal cortexNeurosciences. Biological psychiatry. NeuropsychiatryStimulationElectroencephalographyInhibitory postsynaptic potentialBehavioral Neurosciencespatial attentionNeuroplasticitymedicineBiological PsychiatryOriginal ResearchResting state fMRImedicine.diagnostic_testbusiness.industryfunctional connectivityPsychiatry and Mental healthNeuropsychology and Physiological PsychologyNeurologyBrain stimulationbusinessNeuroscienceelectroencephalographyRC321-571NeuroscienceFrontiers in Human Neuroscience
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Extracting multi-mode ERP features using fifth-order nonnegative tensor decomposition

2018

Background Preprocessed Event-related potential (ERP) data are usually organized in multi-way tensor, in which tensor decomposition serves as a powerful tool for data processing. Due to the limitation of computation burden for multi-way data and the low algorithm performance of stability and efficiency, multi-way ERP data are conventionally reorganized into low-order tensor or matrix before further analysis. However, the reorganization may hamper mode specification and spoil the interaction information among different modes. New method In this study, we applied a fifth-order tensor decomposition to a set of fifth-order ERP data collected by exerting proprioceptive stimulus on left and right…

nonnegative tensor decompositionevent-related potentialmulti-mode featuresCANDECOMP/PARAFACsignaalinkäsittelycomponent number selectionEEG
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Numerical construction of the density-potential mapping

2018

We demonstrate how a recently developed method Nielsen et al. [Nielsen et al., EPL 101, 33001 (2013)] allows for a comprehensive investigation of time-dependent density functionals in general, and of the exact time-dependent exchange-correlation potential in particular, by presenting the first exact results for two- and three-dimensional multi-electron systems. This method is an explicit realization of the Runge–Gross correspondence, which maps time-dependent densities to their respective potentials, and allows for the exact construction of desired density functionals. We present in detail the numerical requirements that makes this method efficient, stable and precise even for large and rap…

numeeriset menetelmätSolid-state physicstiheysfunktionaaliteoriadensity-potential mappingZero (complex analysis)Complex systemBoundary (topology)02 engineering and technologyState (functional analysis)021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciencesElectronic Optical and Magnetic Materials0103 physical sciencesStatistical physicsBoundary value problem010306 general physics0210 nano-technologyCurrent densityRealization (systems)numerical constructionMathematicsThe European Physical Journal B
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