Search results for "Signal processing"

showing 10 items of 2451 documents

Rifle-balancing in precision shooting:behavioral aspects and psychophysiological implication

2007

This study investigated sharpshooters' strategies to control their rifle stability during the aiming period. Six elite and six pre-elite shooters completed a simulated realistic shooting task (laser rifle), and their performance was evaluated from behavioral and psychophysiological perspectives. The analysis of the rifle's barrel movement, indexing the shooter's behavioral performance, supported the view that rifle-balancing is an essential determinant of superior shooting performance. The psychophysiological data, i.e. the brain slow potentials, suggested that the shooters applied different rifle-hold strategies; the elite shooters concentrated primarily on achieving a stable rifle positio…

AdultMaleFirearmsEye MovementsAction PotentialsPoison controlPhysical Therapy Sports Therapy and RehabilitationHumansOrthopedics and Sports MedicineRiflePsychomotor learningAnalysis of VarianceBrainEye movementElectroencephalographySignal Processing Computer-AssistedSport psychologyFrontal LobeElectrooculographyPsychophysiologyMotor SkillsSpace PerceptionMultivariate AnalysisVisual PerceptionFunctional significancePsychological aspectsPsychologyPsychomotor PerformancePsychophysiologySportsCognitive psychologyScandinavian Journal of Medicine & Science in Sports
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Separable neural bases for subprocesses of recognition in working memory.

2011

Working memory supports the recognition of objects in the environment. Memory models have postulated that recognition relies on 2 processes: assessing the degree of similarity between an external stimulus and memory representations and testing the resulting summed-similarity value against a critical level for recognition. Here, we varied the similarity between samples held in working memory and a probe to investigate these 2 processes with magnetoencephalography. Two separable components matched our expectations: First, from 280 ms after probe onset, clearly nonmatching probes differed from both similar nonmatches and matches over left frontal cortex. At 350--400 ms, these signals evolved i…

AdultMaleFrontal cortexCognitive NeuroscienceStimulus (physiology)Separable spaceCellular and Molecular NeuroscienceYoung AdultmedicineHumansCommunicationBrain Mappingmedicine.diagnostic_testbusiness.industryWorking memoryCognitive neuroscience of visual object recognitionBrainMagnetoencephalographyPattern recognitionRecognition PsychologySignal Processing Computer-AssistedMagnetoencephalographyMemory Short-TermFrontal lobeTime courseFemaleArtificial intelligencebusinessPsychologyCerebral cortex (New York, N.Y. : 1991)
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Causal transfer function analysis to describe closed loop interactions between cardiovascular and cardiorespiratory variability signals

2004

Although the concept of transfer function is intrinsically related to an input-output relationship, the traditional and widely used estimation method merges both feedback and feedforward interactions between the two analyzed signals. This limitation may endanger the reliability of transfer function analysis in biological systems characterized by closed loop interactions. In this study, a method for estimating the transfer function between closed loop interacting signals was proposed and validated in the field of cardiovascular and cardiorespiratory variability. The two analyzed signals x and y were described by a bivariate autoregressive model, and the causal transfer function from x to y w…

AdultMaleGeneral Computer ScienceLinear transfer functionBlood PressureBivariate analysisTransfer functionModels BiologicalFeedbackCausality (physics)Cardiovascular Physiological PhenomenaControl theoryCoherence (signal processing)HumansComputer SimulationLungMathematicsComputer Science (all)Linear modelFeed forwardReproducibility of ResultsRegression analysisHeartAutoregressive modelCardiovascular controlLinear ModelsRespiratory Physiological PhenomenaRegression AnalysisFemaleCoherenceAlgorithmsBiotechnology
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Comparison of three accelerated pulse sequences for semiquantitative myocardial perfusion imaging using sensitivity encoding incorporating temporal f…

2007

Purpose To investigate the parallel acquisition technique sensitivity encoding incorporating temporal filtering (TSENSE) with three saturation-recovery (SR) prepared pulse sequences (SR turbo fast low-angle shot [SR-TurboFLASH], SR true fast imaging with steady precession [SR-TrueFISP], and SR-prepared segmented echo-planar-imaging [SR-segEPI]) for semiquantitative first-pass myocardial perfusion imaging. Materials and Methods In blood- and tissue-equivalent phantoms the relationship between signal intensity (SI) and contrast-medium concentration was evaluated for the three pulse sequences. In volunteers, signal-to-noise ratio (SNR), contrast-to-noise ratio (CNR), and normalized upslopes (N…

AdultMaleImage qualityContrast MediaImage processingSensitivity and SpecificityMyocardial perfusion imagingHeart RateImage Processing Computer-AssistedImage noiseHumansMedicineRadiology Nuclear Medicine and imagingmedicine.diagnostic_testEcho-Planar ImagingPhantoms ImagingPulse (signal processing)business.industryMyocardiumReproducibility of ResultsLinearityMagnetic resonance imagingMagnetic Resonance ImagingPerfusionLinear rangeFemalebusinessNuclear medicineBiomedical engineeringJournal of Magnetic Resonance Imaging
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Redundant and synergistic information transfer in cardiovascular and cardiorespiratory variability

2015

In the framework of information dynamics, new tools are emerging which allow one to quantify how the information provided by two source processes about a target process results from the contribution of each source and from the interaction between the sources. We present the first implementation of these tools in the assessment of short-term cardiovascular and cardiorespiratory variability, by introducing two strategies for the decomposition of the information transferred to heart period (HP) variability from systolic arterial pressure (SAP) and respiration flow (RF) variability. Several measures based on the notion of transfer entropy (TE) are defined to quantify joint, individual and redun…

AdultMaleInformation transferComputer scienceEntropyBiomedical EngineeringBlood PressureHealth Informaticscomputer.software_genreCardiovascular Physiological PhenomenaElectrocardiographyHeart RateHumansPaced breathingSimulation1707Motor NeuronsRespirationModels CardiovascularHealthy subjectsHeartCardiorespiratory fitnessHealthy VolunteersSignal ProcessingSettore ING-INF/06 - Bioingegneria Elettronica E InformaticaSystolic arterial pressureFemaleTransfer entropyData miningcomputer
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Instantaneous transfer entropy for the study of cardio-respiratory dynamics

2015

Measures of transfer entropy have been proposed to quantify the directional coupling and strength between two complex physiological variables. Particular attention has been given to nonlinear interactions within cardiovascular and respiratory dynamics as influenced by the autonomic nervous system. However, standard transfer entropy estimates have shown major limitations in dealing with issues concerning stochastic system modeling, limited observations in time, and the assumption of stationarity of the considered physiological variables. Moreover, standard estimates are unable to track time-varying changes in nonlinear coupling with high resolution in time. Here, we propose a novel definitio…

AdultMaleInformation transferComputer scienceEntropyPostureBiomedical EngineeringProbability density functionHealth InformaticsMaximum entropy spectral estimationNonlinear DynamicEntropy (classical thermodynamics)ElectrocardiographyTheoreticalRespiratory RateControl theoryModelsHeart RateTilt-Table TestEntropy (information theory)Humans1707; Signal Processing; Biomedical Engineering; Health InformaticsStatistical physicsEntropy (energy dispersal)Entropy (arrow of time)1707Likelihood FunctionsEntropy (statistical thermodynamics)Models TheoreticalLikelihood FunctionNonlinear systemDiscrete time and continuous timeNonlinear DynamicsSignal ProcessingSettore ING-INF/06 - Bioingegneria Elettronica E InformaticaTransfer entropyFemaleAdult; Electrocardiography; Entropy; Female; Heart Rate; Humans; Likelihood Functions; Male; Models Theoretical; Nonlinear Dynamics; Posture; Tilt-Table Test; Respiratory Rate; Signal Processing; Biomedical Engineering; 1707; Health InformaticsEntropy (order and disorder)Human
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An Information-Theoretic Framework to Map the Spatiotemporal Dynamics of the Scalp Electroencephalogram

2016

We present the first application of the emerging framework of information dynamics to the characterization of the electroencephalography (EEG) activity. The framework provides entropy-based measures of information storage (self entropy, SE) and information transfer (joint transfer entropy (TE) and partial TE), which are applied here to detect complex dynamics of individual EEG sensors and causal interactions between different sensors. The measures are implemented according to a model-free and fully multivariate formulation of the framework, allowing the detection of nonlinear dynamics and direct links. Moreover, to deal with the issue of volume conduction, a compensation for instantaneous e…

AdultMaleInformation transferEntropyComputation0206 medical engineeringInformation TheoryBiomedical Engineering02 engineering and technologyScalp electroencephalogramElectroencephalographyMachine learningcomputer.software_genreEEG propagationYoung Adult03 medical and health sciences0302 clinical medicinevolume conductionmedicineHumansCausal connectivitytransfer entropy (TE)MathematicsBrain MappingScalpmedicine.diagnostic_testbusiness.industryBrainElectroencephalographySignal Processing Computer-AssistedPattern recognitioncomplex dynamic020601 biomedical engineeringmultivariate time series analysiComplex dynamicsNonlinear systemSettore ING-INF/06 - Bioingegneria Elettronica E InformaticaFemaleentropy estimationTransfer entropyArtificial intelligenceInformation dynamicsbusinesscomputer030217 neurology & neurosurgeryIEEE Transactions on Biomedical Engineering
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Instantaneous Transfer Entropy for the Study of Cardiovascular and Cardio-Respiratory Nonstationary Dynamics

2017

Objective: Measures of transfer entropy (TE) quantify the direction and strength of coupling between two complex systems. Standard approaches assume stationarity of the observations, and therefore are unable to track time-varying changes in nonlinear information transfer with high temporal resolution. In this study, we aim to define and validate novel instantaneous measures of TE to provide an improved assessment of complex nonstationary cardiorespiratory interactions. Methods: We here propose a novel instantaneous point-process TE (ipTE) and validate its assessment as applied to cardiovascular and cardiorespiratory dynamics. In particular, heartbeat and respiratory dynamics are characteriz…

AdultMaleInformation transferHistoryHeartbeatDatabases FactualPhysiologyEntropy0206 medical engineeringComplex systemBiomedical EngineeringHeart Rate VariabilityProbability density function02 engineering and technology01 natural sciencesPoint processStatistics NonparametricElectrocardiographyYoung Adult0103 physical sciencesProbability density functionEntropy (information theory)HumansStatistical physicsTransfer Entropy010306 general physicsBiomedical measurementMathematicsbusiness.industryHemodynamicsModels CardiovascularHeart beatSignal Processing Computer-AssistedComplexityBaroreflex020601 biomedical engineeringKolmogorov-Smirnov DistanceRespiratory Sinus ArrhythmiaBaroreflex; Biomedical measurement; Complexity; Entropy; Heart beat; Heart rate variability; Heart Rate Variability; History; Kolmogorov-Smirnov Distance; Physiology; Point Process; Probability density function; Respiratory Sinus Arrhythmia; Transfer Entropy; Biomedical EngineeringDiscrete time and continuous timePoint ProceSettore ING-INF/06 - Bioingegneria Elettronica E InformaticaPoint ProcessTransfer entropyFemaleArtificial intelligencebusiness
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Effects of a 21 days space flight on the mechanical performance and the EMG power spectrum of the leg muscles

2002

AdultMaleLegMaterials scienceElectromyographyWeightlessnessBiomedical EngineeringSpectral densitySignal Processing Computer-AssistedSpace Flightmaximal power; space fligth; microgravitySpaceflightmicrogravitylaw.inventionLeg musclespace fligthlawReference Valuesmaximal powerIsometric ContractionExercise TestHumansMuscle SkeletalSimulation
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(De-)Accentuation and the Processing of Information Status: Evidence from Event-Related Brain Potentials

2012

The paper reports on a perception experiment in German that investigated the neuro-cognitive processing of information structural concepts and their prosodic marking using event-related brain potentials (ERPs). Experimental conditions controlled the information status (given vs. new) of referring and non-referring target expressions (nouns vs. adjectives) and were elicited via context sentences, which did not – unlike most previous ERP studies in the field – trigger an explicit focus expectation. Target utterances displayed prosodic realizations of the critical words which differed in accent position and accent type. Electrophysiological results showed an effect of information status, maxi…

AdultMaleLinguistics and LanguageSound SpectrographySpeech perceptionSociology and Political ScienceConcept FormationContingent Negative VariationContext (language use)Speech AcousticsLanguage and LinguisticsYoung AdultSpeech and HearingNeurolinguisticsEvent-related potentialStress (linguistics)HumansNeurolinguistic ProgrammingDominance CerebralEvoked PotentialsCerebral CortexBrain MappingPitch accentElectroencephalographySignal Processing Computer-AssistedGeneral MedicineLinguisticsN400SemanticsFocus (linguistics)Speech PerceptionFemaleCuesPsychologypsychological phenomena and processesLanguage and Speech
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