Search results for "Visual field"

showing 10 items of 118 documents

Reliability in perimetric multichannel contrast sensitivity measurements

2014

Background: In this study, the reliability of perimetric contrast sensitivity measurements favouring the achromatic, the red-green and the blue-yellow post-receptorial mechanisms was analysed. Methods: A new technique, multichannel ATD perimetry, provides spatial and temporal stimuli favouring the detection by an achromatic mechanism (A), from a magno or parvocellular origin or by a red-green (RG) chromatic mechanism, with a parvocellular origin or a blue-yellow (BY) mechanism, with a koniocellular origin. The repeatability and reproducibility of contrast sensitivity measurements with these stimuli were studied in a group of 40 healthy subjects. The analysis was carried out on 21 testing po…

AdultMaleFovea Centralismedia_common.quotation_subjectMultichannel perimetryAgreementlaw.inventionContrast SensitivityYoung AdultOpticsParvocellular celllawHumansContrast (vision)RepeatabilityContrast sensitivityReliability (statistics)Ópticamedia_commonMathematicsReproducibilitybusiness.industryReproducibility of ResultsRepeatabilityHealthy VolunteersReproducibilityVisual fieldOphthalmologyKoniocellular cellROC CurveAchromatic lensVisual Field TestsFemaleVisual FieldsbusinessOptometryBiomedical engineeringClinical and Experimental Optometry
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Lexical competition is enhanced in the left hemisphere: Evidence from different types of orthographic neighbors

2007

Two divided visual field lexical decision experiments were conducted to examine the role of the cerebral hemispheres in orthographic neighborhood effects. In Experiment 1, we employed two types of words: words with many substitution neighbors (high-N) and words with few substitution neighbors (low-N). Results showed a facilitative effect of N in the left visual field (i.e., right hemisphere) and an inhibitory effect of N in the right visual field (left hemisphere). In Experiment 2, we examined whether the inhibitory effect of the higher frequency neighbors increases in the left hemisphere as compared to the right hemisphere. To go beyond the usual N-metrics, we selected words with (or witho…

AdultMaleLinguistics and LanguageVisual perceptionCognitive NeuroscienceExperimental and Cognitive PsychologyVocabularyFunctional LateralityLanguage and LinguisticsLateralization of brain functionSpeech and HearingReaction TimeLexical decision taskHumansCommunicationbusiness.industryBrainVisual fieldWord lists by frequencyWord recognitionCerebral hemisphereLateralityVisual PerceptionFemaleVisual FieldsbusinessPsychologyPsychomotor PerformanceCognitive psychologyBrain and Language
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Does matching of internal and external facial features depend on orientation and viewpoint?

2009

Although it is recognized that external (hair, head and face outline, ears) and internal (eyes, eyebrows, nose, mouth) features contribute differently to face recognition it is unclear whether both feature classes predominately stimulate different sensory pathways. We employed a sequential speed-matching task to study face perception with internal and external features in the context of intact faces, and at two levels of contextual congruency. Both internal and external features were matched faster and more accurately in the context of totally congruent/incongruent facial stimuli compared to just featurally congruent/ incongruent faces. Matching of totally congruent/incongruent faces was no…

AdultMaleMatching (statistics)media_common.quotation_subjecteducationExperimental and Cognitive PsychologyContext (language use)Facial recognition systemYoung AdultArts and Humanities (miscellaneous)Face perceptionOrientationPerceptionReaction TimeDevelopmental and Educational PsychologyHumansmedia_commonCommunicationOrientation (computer vision)business.industryRecognition PsychologyGeneral MedicineForm PerceptionFeature (computer vision)FaceFace (geometry)FemaleVisual FieldsbusinessPsychologyCognitive psychologyActa Psychologica
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Image quality and visual performance in the peripheral visual field following photorefractive keratectomy.

2002

ABSTRACT PURPOSE: A theoretical and experimental study was performed to assess the possible effects of photorefractive keratectomy (PRK) on retinal image quality and thresholds in the peripheral visual field. METHODS: Simple optical calculations suggest that although the quality of the retinal image at the fovea of the postoperative PRK eye may be comparable to that in an emmetropic eye, images in the peripheral field may be markedly worse, since peripheral ray bundles may pass partly through ablated and partly through unablated cornea, giving a simultaneous-vision bifocal effect. This would be expected to create an annular zone of confusion, so that light from two different directions in o…

AdultMaleOptics and Photonicsgenetic structuresmedicine.medical_treatmentVisual AcuityEmmetropiaPhotorefractive Keratectomychemistry.chemical_compoundCorneaMyopiaHumansMedicineVision OcularRetinabusiness.industryRetinaleye diseasesPhotorefractive keratectomyVisual fieldOphthalmologymedicine.anatomical_structureMeridian (perimetry visual field)chemistrySensory ThresholdsVisual Field TestsOptometryFemaleLasers ExcimerSurgerysense organsVisual FieldsbusinessPhotopic vision
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Postoperative astigmatism and rotational stability after Artisan toric phakic intraocular lens implantation

2003

Abstract Purpose To evaluate deviations in the axis (intended versus achieved) and postoperative astigmatism after implantation of an Artisan toric phakic intraocular lens (IOL). Setting University Eye Hospital, Mainz, Germany. Methods This prospective study comprised 29 eyes with high ametropia and astigmatism. All eyes had uneventful implantation of a toric phakic IOL through a superior scleral tunnel incision at 12 o’clock. After a minimum of 6 months, the uncorrected visual acuity (UCVA), best correct visual acuity, refraction, and astigmatism were analyzed in all eyes. A multivariate analysis of postoperative astigmatism was performed. Results After a follow-up of at least 6 months, 95…

AdultMaleRefractive errorVisual acuityRotationgenetic structuresmedicine.medical_treatmentEmmetropiaIntraocular lensPhakic intraocular lensLens Implantation IntraocularmedicineHumansPostoperative PeriodProspective StudiesDioptreLenses Intraocularbusiness.industryAstigmatismEquipment DesignMiddle AgedRefractive Errorsmedicine.diseaseeye diseasesSensory SystemsRefractive Surgical ProceduresToric lensOphthalmologyMeridian (perimetry visual field)OptometryFemaleSurgerysense organsmedicine.symptombusinessJournal of Cataract and Refractive Surgery
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Structure-function relationship between FDF, FDT, SAP, and scanning laser ophthalmoscopy in glaucoma patients.

2012

Purpose Flicker defined form perimetry (FDF) and frequency doubling technology perimetry (FDT) are alleged to detect glaucoma at an earlier stage than standard automated perimetry (SAP). It is the purpose of this study to investigate the structure-function relationship between FDF, FDT, SAP, and confocal scanning laser ophthalmoscopy (cSLO) in patients with glaucoma. Methods Seventy-six patients with glaucoma were included in the study. Patients were tested with SAP, Matrix-FDT, FDF perimetry, and cSLO. Structure-function relationships between global and sectoral cSLO parameters and global and sectoral mean sensitivity (MS) of SAP, Matrix-FDT, and FDF were calculated using Spearman's rank c…

AdultMaleRetinal Ganglion CellsIntraocular pressuremedicine.medical_specialtygenetic structuresGlaucomaOphthalmologyLinear regressionmedicineHumansIn patientTomographyIntraocular PressureMathematicsRank correlationRetrospective StudiesAutomated perimetryStructure functionReproducibility of ResultsGlaucomaMiddle Agedmedicine.diseaseeye diseasesScanning laser ophthalmoscopyOphthalmoscopyVisual Field TestsFemaleVisual FieldsInvestigative ophthalmologyvisual science
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Flicker Defined Form Perimetry in Glaucoma Suspects with Normal Achromatic Visual Fields

2014

To evaluate if repeated flicker-defined form (FDF) perimetry can detect visual field (VF) defects in glaucoma suspects with normal findings in achromatic standard automated perimetry (SAP).Patients with optic nerve heads (ONHs) or retinal nerve fiber layer (RNFL) findings clinically suspicious for glaucoma and normal SAP were enrolled. Patients underwent VF testing with FDF perimetry (Heidelberg Edge Perimetry, HEP) at two consecutive visits (HEP I and HEP II) and confocal scanning laser ophthalmoscopy with the Heidelberg Retina Tomograph (HRT). Abnormal HEP was defined by cluster-point analysis (CPA) and by the HEP specific glaucoma hemi-field test (GHT). Results were compared with an age-…

AdultMaleRetinal Ganglion Cellsmedicine.medical_specialtygenetic structuresOptic DiskVision DisordersVisual AcuityNerve fiber layerGlaucomalaw.inventionTonometry OcularCellular and Molecular Neurosciencechemistry.chemical_compoundNerve FiberslawOphthalmologymedicineHumansProspective StudiesIntraocular PressureHeidelberg retina tomographOptic Nerve Headsbusiness.industryGlaucomaRetinalMiddle Agedmedicine.diseaseeye diseasesSensory SystemsVisual fieldConfocal scanning laser ophthalmoscopyOphthalmologyEarly Diagnosismedicine.anatomical_structurechemistryAchromatic lensVisual Field TestsFemaleOcular Hypertensionsense organsVisual FieldsbusinessCurrent Eye Research
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Integration of sensory information precedes the sensation of vection: a combined behavioral and event-related brain potential (ERP) study.

2014

Illusory self-motion (known as vection) describes the sensation of ego-motion in the absence of physical movement. Vection typically occurs in stationary observers being exposed to visual information that suggest self-motion (e.g. simulators, virtual reality). In the present study, we tested whether sensory integration of visual information triggers vection: participants (N=13) perceived patterns of moving altered black-and-white vertical stripes on a screen that was divided into a central and a surrounding peripheral visual field. In both fields the pattern was either moving or stationary, resulting in four combinations of central and peripheral motions: (1) central and peripheral stripes …

AdultMaleTime FactorsMotion Sicknessmedia_common.quotation_subjectMotion PerceptionSensationSensory systemElectroencephalographyStimulus (physiology)Behavioral NeuroscienceYoung AdultPerceptionSensationmedicineReaction TimeHumansEvoked PotentialsKinesthesismedia_commonNeural correlates of consciousnessCommunicationAnalysis of Variancemedicine.diagnostic_testbusiness.industryBrainElectroencephalographymedicine.diseaseIllusionshumanitiesVisual fieldMotion sicknessFemaleVisual FieldsbusinessPsychologyNeuroscienceBehavioural brain research
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Prism adaptation by mental practice

2012

International audience; The prediction of our actions and their interaction with the external environment is critical for sensorimotor adaptation. For instance, during prism exposure, which deviates laterally our visual field, we progressively correct movement errors by combining sensory feedback with forward model sensory predictions. However, very often we project our actions to the external environment without physically interacting with it (e.g., mental actions). An intriguing question is whether adaptation will occur if we imagine, instead of executing, an arm movement while wearing prisms. Here, we investigated prism adaptation during mental actions. In the first experiment, participa…

AdultMaleVisual perceptionMovementCognitive NeuroscienceExperimental and Cognitive PsychologyAdaptation (eye)Sensory systemDevelopmental psychologyYoung AdultMotor imageryFeedback SensoryHumans[SDV.NEU] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]Neuronal PlasticityProprioceptionProprioceptionAdaptation PhysiologicalVisual fieldNeuropsychology and Physiological PsychologyPrism adaptationPractice Psychological[ SDV.NEU ] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]ImaginationVisual Perception[SDV.NEU]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]FemalePrismVisual FieldsPsychologyPrism adaptationPsychomotor PerformanceCognitive psychologyCortex
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Functional Magnetic Resonance Imaging Activations of Cortical Eye Fields during Saccades, Smooth Pursuit, and Optokinetic Nystagmus

2009

Saccades, smooth pursuit, and optokinetic nystagmus (OKN) are three basic eye movements in our ocular motor repertoire that enable us to explore the visual field. These eye movements are cortically controlled in different cortical eye fields, including the frontal eye fields (FEF) and parietal eye fields (PEF), as well as the motion-sensitive visual area MT+/V5. It is not known if this cortical control is organized in parallel cortico-cortical networks or in adjacent subregions of one system. Nor do we know where the specific eye fields are exactly located. Functional magnetic resonance imaging (fMRI) was used to investigate these open questions about the FEF, PEF, and MT+/V5. Activations o…

AdultMalegenetic structuresGeneral Biochemistry Genetics and Molecular BiologySmooth pursuitHistory and Philosophy of ScienceCortex (anatomy)SaccadesmedicineHumansAgedmedicine.diagnostic_testGeneral NeuroscienceEye movementOptokinetic reflexMiddle AgedFrontal eye fieldsMagnetic Resonance Imagingeye diseasesParietal eyeVisual fieldmedicine.anatomical_structureFemalesense organsVisual FieldsFunctional magnetic resonance imagingPsychologyNeuroscienceAnnals of the New York Academy of Sciences
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