Search results for "fields"

showing 10 items of 575 documents

The relationship between navigation abilities and mental disorders: Oral presentation

2021

memoryspatial navigationstructural MRIhippocampal subfields
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Vertical Line Array (VLA) Beam - Forming Algorithm with constant beam width.

2005

The algorithm proposed is a beam-forming algorithm. Many beam-steering and beam-forming algorithms exist and they are all based on the control of delay times between the signals driving the loudspeakers of the line array; this kind of control produces a variable beam-width depending on steering angle and frequency. In our case beam width doesn't depend on frequency and steering angle because a specific beam forming technique was applied by shading the amplitudes of signals for each element of the array according to the frequency applied. Furthermore a weighting function was utilized for spatial windowing. Spatial windowing allows reduction of secondary lobes without varying the directivity …

mobile satelliteLoudspeakersAcoustic fields
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Proprioceptive response strength in the primary sensorimotor cortex is invariant to the range of finger movement

2023

Available online 13 February 2023 Proprioception is the sense of body position and movement that relies on afference from the proprioceptors in muscles and joints. Proprioceptive responses in the primary sensorimotor (SM1) cortex can be elicited by stim- ulating the proprioceptors using evoked (passive) limb movements. In magnetoencephalography (MEG), propri- oceptive processing can be quantified by recording the movement evoked fields (MEFs) and movement-induced beta power modulations or by computing corticokinematic coherence (CKC) between the limb kinematics and cortical activity. We examined whether cortical proprioceptive processing quantified with MEF peak strength, relative beta supp…

movement rangeAccelerationSomatosensoryproprioseptioMechanoreceptorsomatosensoryrange of motionmovement evoked fieldsMagnetoencelphalographyMuscle spindleMovement evoked fieldBeta modulationCortico-kinematic coherenceRange of motionPassive movementjerk of movementMEGliikeaistisormetaccelerationProprioceptionliikeSensorimotor cortexaivokuoriKinesthesiacorticokinematic coherenceMovement evoked fieldsaivotkinesthesiamuscle spindlemechanoreceptorasennot (ruumiinasennot)Corticokinematic coherence
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Quaternary Reversible Circuit Optimization for Scalable Multiplexer and Demultiplexer

2023

Information loss is generally related to power consumption. Therefore, reducing information loss is an interesting challenge in designing digital systems. Quaternary reversible circuits have received significant attention due to their low-power design applications and attractive advantages over binary reversible logic. Multiplexer and demultiplexer circuits are crucial parts of computing circuits in ALU, and their efficient design can significantly affect the processors’ performance. A new scalable realization of quaternary reversible 4×1 multiplexer and 1×4 demultiplexer, based on quaternary 1-qudit Shift, 2-qudit Controlled Feynman, and 2-qudit Muthukrishnan-Stroud gates, is presented in …

multiplexingGeneral Computer Sciencecircuit synthesislogic gatesGeneral EngineeringGalois fieldscostsGeneral Materials SciencetransformsElectrical and Electronic Engineeringkvanttilaskentaquantum computing
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Highly-parallelized simulation of a pixelated LArTPC on a GPU

2023

The rapid development of general-purpose computing on graphics processing units (GPGPU) is allowing the implementation of highly-parallelized Monte Carlo simulation chains for particle physics experiments. This technique is particularly suitable for the simulation of a pixelated charge readout for time projection chambers, given the large number of channels that this technology employs. Here we present the first implementation of a full microphysical simulator of a liquid argon time projection chamber (LArTPC) equipped with light readout and pixelated charge readout, developed for the DUNE Near Detector. The software is implemented with an end-to-end set of GPU-optimized algorithms. The alg…

multiplication and inductionpulse formationscintillationtutkimuslaitteethiukkasfysiikkaelectric fieldsnoble liquid detectorscharge transportdetector modelling and simulations IIsimulation methods and programsMonte Carlo -menetelmätilmaisimetelectron emissiondouble-phaseprosessointiionizationalgoritmittime projection chamberssimulointiTPC
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Spatial Cognition 2020/1: Book of abstracts : August 2-4, 2021, University of Latvia

2021

Spatial Cognition is concerned with the acquisition, development, representation, organization, and use of knowledge about spatial objects in real, virtual or hybrid environments and processed by human or artificial agents. Spatial Cognition includes research from different fields insofar as they are concerned with cognitive agents and space, such as cognitive and developmental psychology, linguistics, computer science, geography, cartography, philosophy, neuroscience, and education. Research issues in the field range from the investigation of human spatial cognition to mobile robot navigation, including topics such as wayfinding, spatial planning, spatial learning, internal and external re…

multivariate pattern classificationspatial demonstrativesgeospatial expertisefirst-person viewfictionmemorydirectional sensedecision pointsexpertise development geographydeictic communicationtactile perceptionexteroceptionperspective takingaction perceptionspatial precisionvisuospatial perspectivespatial thinkingnavigationflexible behaviourcomputational perceptionaction simulationminimally invasive surgeryenvironmental learningtheory of mindarthroscopylearningamphibianspigeon flightanimal cognitioncognitive sciencemultimodal communicationfMRIindividual spatial factorsSTEMartificial intelligencestereometrysense-of-directionanxietygeometrical intelligencegeospatial thinkinggesturevirtual realityQGISOpenFacefixation classificationLévy flightsenvironmental familiaritysemantic vs episodic memorydance interventionnon-visual eye movements (NVEMs)spatial navigationspatial self-efficacyexplorationspatial updatingreference framesinteroceptionlow visionsurgical navigationdance expertiseneurolinguistic programming (NLP)mental foragingmanual and automatic annotation stylesnavigational abilitiesindividual differencesstructural MRIvisualizationspatial perceptionsymmetrylanguageroute directionsself-modelsspatial perspective takingspatial encodingdecision-makingcognitive mapGestalt principlesimagined movementmovement expertsspatial orientationhippocampal subfieldsdeclarative memorypersonalityspace syntaxvisual perspectivespatial skillsepisodic and semantic cognitionmini-mapimaginationegocentrismmemory searchmental rotation
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Search for Electron Antineutrino Appearance in a Long-baseline Muon Antineutrino Beam

2020

Electron antineutrino appearance is measured by the T2K experiment in an accelerator-produced antineutrino beam, using additional neutrino beam operation to constrain parameters of the Pontecorvo-Maki-Nakagawa-Sakata (PMNS) mixing matrix. T2K observes 15 candidate electron antineutrino events with a background expectation of 9.3 events. Including information from the kinematic distribution of observed events, the hypothesis of no electron antineutrino appearance is disfavored with a significance of 2.40 σ and no discrepancy between data and PMNS predictions is found. A complementary analysis that introduces an additional free parameter which allows non-PMNS values of electron neutrino and a…

muon antineutrino beamGeneral Physics and Astronomyantineutrino/mu: secondary beamKAMIOKANDEantineutrino/e: particle identification01 natural sciences09 EngineeringHigh Energy Physics - ExperimentHigh Energy Physics - Experiment (hep-ex)secondary beam [neutrino/mu][PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex]neutrino/e: particle identificationQCPhysics02 Physical SciencesPhysicsJ-PARC LabT2K experimentelectron antineutrinoT2K CollaborationkinematicsPhysical SciencesParticle Physics - ExperimentT2K experiment in an accelerator-producedGeneral Physics530 PhysicsPhysics MultidisciplinaryFOS: Physical sciencesparticle identification [antineutrino/e]Neutrino beamsecondary beam [antineutrino/mu]530Physics::GeophysicsNuclear physics0103 physical sciencesmixingddc:530010306 general physics01 Mathematical SciencesMuonScience & Technologyparticle identification [neutrino/e]hep-exbackgroundHigh Energy Physics - Experiment; High Energy Physics - Experimentneutrino/mu: secondary beamantineutrino: oscillationoscillation [antineutrino]Elementary Particles and FieldsHigh Energy Physics::ExperimentPMNSElectron neutrinoBeam (structure)Free parameterexperimental results
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Timing an Accreting Millisecond Pulsar: Measuring the Accretion Torque in IGR J00291+5934

2006

We performed a timing analysis of the fastest accreting millisecond pulsar IGR J00291+5934 using RXTE data taken during the outburst of December 2004. We corrected the arrival times of all the events for the orbital (Doppler) effects and performed a timing analysis of the resulting phase delays. In this way we have the possibility to study, for the first time in this class of sources, the spin-up of a millisecond pulsar as a consequence of accretion torques during the X-ray outburst. The accretion torque gives us for the first time an independent estimate of the mass accretion rate onto the neutron star, which can be compared with the observed X-ray luminosity. We also report a revised valu…

neutron; stars : magnetic fields; pulsars : general; pulsars : individual : IGR J00291+5934; X-ray : binaries [accretion accretion disks; stars]X-rays : binariesAstrophysics::High Energy Astrophysical PhenomenaX-ray binaryFOS: Physical sciencesAstrophysicsaccretion accretion diskAstrophysicsX-ray : binariesBinary pulsarLuminositypulsars : individual : IGR J00291+5934symbols.namesakePulsarMillisecond pulsarAstrophysics::Solar and Stellar Astrophysicspulsars : individual (IGR J00291+5934)PhysicsAccretion (meteorology)general; pulsars : individual (IGR J00291+5934); stars : magnetic fields; stars : neutron; X-rays : binaries [pulsars]Astrophysics (astro-ph)pulsars : generalStatic timing analysisAstronomystars : magnetic fieldAstronomy and Astrophysicsstars : neutronNeutron starSpace and Planetary SciencesymbolsAstrophysics::Earth and Planetary AstrophysicsDoppler effectX-ray pulsar
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Usage des organisateurs anti-entropique dans les documents électroniques : approche expérimentale des fenêtres ponctuelles

1999

International audience; Les documents électroniques permettent de nombreuses manières d'organiser, de présenter et d'accéder à l'information. Une utilisation pertinente de ces options par les auteurs requiert une bonne connaissance des effets que ces choix ont sur la représentation cognitive et les traitements faits par l'utilisateur. Cette approche des documents électroniques, sur la base du concept de représentation mentale, fournit un cadre d'analyse des structures et signaux propres à ce type d'écriture. Parmi ces signaux que nous appelons « organisateurs para-linguistiques » pour les distinguer de leurs équivalents purement textuels, un ensemble est destiné à réduire l'entropie due à l…

paralinguistic organizers[SHS.INFO]Humanities and Social Sciences/Library and information sciences[SCCO.COMP]Cognitive science/Computer scienceorganisateurs para-linguistiqueselectronic documentsergonomie[SHS.INFO] Humanities and Social Sciences/Library and information sciencespop-up windowsfenêtres ponctuelles[SCCO.COMP] Cognitive science/Computer scienceergonomicsdigital documents[ SCCO.COMP ] Cognitive science/Computer sciencedocuments électroniques[ SHS.INFO ] Humanities and Social Sciences/Library and information sciencesescamotsinfo-bullesinformation retrievalrecherche d'informationdocuments numériquespop-up fields
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Collision Avoidance with Potential Fields Based on Parallel Processing of 3D-Point Cloud Data on the GPU

2014

In this paper we present an experimental study on real-time collision avoidance with potential fields that are based on 3D point cloud data and processed on the Graphics Processing Unit (GPU). The virtual forces from the potential fields serve two purposes. First, they are used for changing the reference trajectory. Second they are projected to and applied on torque control level for generating according nullspace behavior together with a Cartesian impedance main control loop. The GPU algorithm creates a map representation that is quickly accessible. In addition, outliers and the robot structure are efficiently removed from the data, and the resolution of the representation can be easily ad…

parallel processingComputer scienceGraphics processing unitPoint cloudpotential fieldslaw.inventionreactive motion generationInstitut für Robotik und Mechatronik (ab 2013)Computer Science::RoboticsParallel processing (DSP implementation)lawControl systemTrajectoryRobotCartesian coordinate systemGPU 3D-Point Cloud Computationcollision avoidanceCollision avoidanceSimulation
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