Search results for " Magnetic resonance"

showing 10 items of 2317 documents

Dissociable contributions of left and right dorsolateral prefrontal cortex in planning.

2010

It is well established that the mid-dorsolateral prefrontal cortex (dlPFC) plays a critical role in planning. Neuroimaging studies have yielded predominantly bilateral dlPFC activations, but the existence and nature of functionally specific contributions of left and right dlPFC have remained elusive. In recent experiments, 2 independent parameters have been identified which substantially determine planning: 1) the degree of interdependence between consecutive steps (search depth) and 2) the degree to which the configuration of the goal state renders the order of single steps either clearly evident or ambiguous (goal hierarchy). Thus, search depth affects the actual mental generation and eva…

AdultMaleTime FactorsLeft brain interpreterCognitive NeurosciencePrefrontal CortexNeuropsychological Testsbehavioral disciplines and activitiesFunctional LateralityCellular and Molecular NeuroscienceExecutive FunctionYoung AdultmedicineImage Processing Computer-AssistedReaction TimeHumansPrefrontal cortexSelf-reference effectBrain Mappingmedicine.diagnostic_testWorking memoryFunctional specializationMagnetic Resonance ImagingDorsolateral prefrontal cortexOxygenmedicine.anatomical_structureFemalePsychologyFunctional magnetic resonance imagingConsumer neurosciencepsychological phenomena and processesCognitive psychologyCerebral cortex (New York, N.Y. : 1991)
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Neural correlates of working memory dysfunction in first-episode schizophrenia patients: an fMRI multi-center study.

2005

Working memory dysfunction is a prominent impairment in patients with schizophrenia. Our aim was to determine cerebral dysfunctions by means of functional magnetic resonance imaging (fMRI) in a large sample of first-episode schizophrenia patients during a working memory task. 75 first-episode schizophrenia patients and 81 control subjects, recruited within a multi-center study, performed 2- and 0-back tasks while brain activation was measured with fMRI. In order to guarantee comparability between data quality from different scanners, we developed and adopted a standardized, fully automated quality assurance of scanner hard- and software as well as a measure for in vivo data quality. After t…

AdultMaleVentrolateral prefrontal cortexAdolescentPrecuneusPrefrontal CortexSerial LearningTemporal lobeThalamusReference ValuesmedicineImage Processing Computer-AssistedReaction TimeHumansAttentionPrefrontal cortexBiological PsychiatryTemporal cortexn-backBrain Mappingmedicine.diagnostic_testWorking memoryMiddle AgedMagnetic Resonance ImagingTemporal LobePsychiatry and Mental healthmedicine.anatomical_structureMemory Short-TermPattern Recognition VisualSchizophreniaFemaleNerve NetPsychologyFunctional magnetic resonance imagingNeuroscienceSchizophrenia research
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Neural Architecture of Selective Stopping Strategies: Distinct Brain Activity Patterns Are Associated with Attentional Capture But Not with Outright …

2017

In stimulus-selective stop-signal tasks, the salient stop signal needs attentional processing before genuine response inhibition is completed. Differential prefrontal involvement in attentional capture and response inhibition has been linked to the right inferior frontal junction (IFJ) and ventrolateral prefrontal cortex (VLPFC), respectively. Recently, it has been suggested that stimulus-selective stopping may be accomplished by the following different strategies: individuals may selectively inhibit their response only upon detecting a stop signal (independent discriminate then stop strategy) or unselectively whenever detecting a stop or attentional capture signal (stop then discriminate s…

AdultMaleVentrolateral prefrontal cortexBrain activity and meditationInferior frontal gyrusCognitive neuroscienceStop signal050105 experimental psychologyDevelopmental psychologyExecutive FunctionRandom AllocationYoung Adult03 medical and health sciences0302 clinical medicineReaction TimemedicineHumansAttention0501 psychology and cognitive sciencesResearch ArticlesBrain Mappingmedicine.diagnostic_testGeneral Neuroscience05 social sciencesBrainCognitionMiddle AgedExecutive functionsInhibition Psychologicalmedicine.anatomical_structureFemaleNerve NetFunctional magnetic resonance imagingPsychologyNeurosciencePsychomotor Performance030217 neurology & neurosurgeryThe Journal of Neuroscience
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Diffusion-tensor MR imaging at 1.5 and 3.0 T: initial observations.

2001

Diffusion-tensor MR imaging was compared at 1.5 and 3.0 T. With sufficient signal-to-noise ratio, we found no differences in fractional anisotropy. With a 40% higher signal-to-noise ratio at 3.0 T, higher resolution could be obtained without introduction of noise-related errors, albeit at the cost of increased geometric distortions caused by 3.0-T magnetic field inhomogeneities.

AdultMalebusiness.industryPhantoms ImagingResolution (electron density)BrainMagnetic Resonance ImagingMagnetic fieldNuclear magnetic resonanceSignal-to-noise ratio (imaging)Fractional anisotropySpin echoMedicineHumansRadiology Nuclear Medicine and imagingFemaleTensorDiffusion (business)businessDiffusion MRIRadiology
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Model order effects on ICA of resting-state complex-valued fMRI data : application to schizophrenia

2018

Abstract Background Component splitting at higher model orders is a widely accepted finding for independent component analysis (ICA) of functional magnetic resonance imaging (fMRI) data. However, our recent study found that intact components occurred with subcomponents at higher model orders. New method This study investigated model order effects on ICA of resting-state complex-valued fMRI data from 82 subjects, which included 40 healthy controls (HCs) and 42 schizophrenia patients. In addition, we explored underlying causes for distinct component splitting between complex-valued data and magnitude-only data by examining model order effects on ICA of phase fMRI data. A best run selection me…

AdultMalecomplex-valued fMRI dataSchizophrenia (object-oriented programming)RestModels Neurologicalphase datata3112050105 experimental psychology03 medical and health sciences0302 clinical medicinetoiminnallinen magneettikuvausComponent (UML)medicineImage Processing Computer-AssistedHumans0501 psychology and cognitive sciencesDefault mode networkMathematicsta113model orderBrain MappingPrincipal Component AnalysisskitsofreniaResting state fMRImedicine.diagnostic_testModel orderbusiness.industryGeneral Neuroscience05 social sciencesBrainsignaalianalyysiPattern recognitionData applicationcomponent splittingIndependent component analysisMagnetic Resonance ImagingOxygenSchizophreniaFemaleArtificial intelligencebusinessFunctional magnetic resonance imagingindependent component analysis (ICA)030217 neurology & neurosurgery
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Direction‐dependent visual cortex activation during horizontal optokinetic stimulation (fMRI study)

2005

Looking at a moving pattern induces optokinetic nystagmus (OKN) and activates an assembly of cortical areas in the visual cortex, including lateral occipitotemporal (motion‐sensitive area MT/V5) and adjacent occipitoparietal areas as well as ocular motor areas such as the prefrontal cortex, frontal, supplementary, and parietal eye fields. The aim of this functional MRI (fMRI) study was to investigate (1) whether stimulus direction‐dependent effects can be found, especially in the cortical eye fields, and (2) whether there is a hemispheric dominance of ocular motor areas. In a group of 15 healthy subjects, OKN in rightward and leftward directions was visually elicited and statistically compa…

AdultMalegenetic structuresEye MovementsMotion PerceptionPosterior parietal cortexNystagmusStimulus (physiology)Functional LateralityOrientationParietal LobemedicineHumansRadiology Nuclear Medicine and imagingVisual PathwaysPrefrontal cortexNystagmus OptokineticResearch ArticlesVisual CortexBrain MappingRadiological and Ultrasound Technologymedicine.diagnostic_testEye movementOptokinetic reflexMagnetic Resonance Imagingeye diseasesFrontal LobeVisual cortexmedicine.anatomical_structureNeurologyOculomotor MusclesSpace PerceptionFemaleNeurology (clinical)Anatomymedicine.symptomNerve NetPsychologyFunctional magnetic resonance imagingNeurosciencePhotic Stimulation
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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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Inhibitory interhemispheric visuovisual interaction in motion perception.

2003

Findings of an earlier functional magnetic resonance imaging (fMRI) study that coherent motion stimulation of the right or left visual hemifield exhibited negative signal changes (deactivations) in the primary visual cortex and the lateral geniculate nucleus contralateral to the stimulated hemisphere were evaluated to determine the functional significance of this contralateral inhibition of the visual system. Fourteen subjects participated in a psychophysical study on the perception of single object motion (0.4 degrees /s) in one visual hemifield with or without concurrent coherent motion stimulation of the contralateral hemifield. Mean detection times for horizontal object motion (0.5 +/- …

AdultMalegenetic structuresMotion PerceptionStimulationLateral geniculate nucleusGeneral Biochemistry Genetics and Molecular BiologyHistory and Philosophy of SciencemedicinePsychophysicsPsychophysicsPremovement neuronal activityHumansMotion perceptionVisual Cortexmedicine.diagnostic_testGeneral NeuroscienceGeniculate BodiesMagnetic resonance imagingMiddle AgedMagnetic Resonance ImagingVisual cortexmedicine.anatomical_structureFemalePsychologyFunctional magnetic resonance imagingNeuroscienceCognitive psychologyAnnals of the New York Academy of Sciences
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Evidence for cortical visual substitution of chronic bilateral vestibular failure (an fMRI study).

2007

Bilateral vestibular failure (BVF) is a rare disorder of the labyrinth or the eighth cranial nerve which has various aetiologies. BVF patients suffer from unsteadiness of gait combined with blurred vision due to oscillopsia. Functional MRI (fMRI) in healthy subjects has shown that stimulation of the visual system induces an activation of the visual cortex and ocular motor areas bilaterally as well as simultaneous deactivations of multisensory vestibular cortex areas. Our question was whether the chronic absence of bilateral vestibular input (BVF) causes a plastic cortical reorganization of the above-described visual-vestibular interaction. We used fMRI to measure the differential effects of…

AdultMalegenetic structuresSensory systemAuditory cortexOscillopsiamedicineImage Processing Computer-AssistedHumansEye Movement MeasurementsNystagmus OptokineticAgedVisual CortexVestibular systemAged 80 and overNeuronal Plasticitymedicine.diagnostic_testMiddle AgedVestibular cortexMagnetic Resonance ImagingVisual cortexmedicine.anatomical_structureVestibular DiseasesChronic DiseaseFemaleNeurology (clinical)medicine.symptomFunctional magnetic resonance imagingPsychologyNeurosciencePhotic StimulationBrodmann areaBrain : a journal of neurology
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Neural mechanisms of training an auditory event‐related potential task in a brain–computer interface context

2019

Effective use of brain-computer interfaces (BCIs) typically requires training. Improved understanding of the neural mechanisms underlying BCI training will facilitate optimisation of BCIs. The current study examined the neural mechanisms related to training for electroencephalography (EEG)-based communication with an auditory event-related potential (ERP) BCI. Neural mechanisms of training in 10 healthy volunteers were assessed with functional magnetic resonance imaging (fMRI) during an auditory ERP-based BCI task before (t1) and after (t5) three ERP-BCI training sessions outside the fMRI scanner (t2, t3, and t4). Attended stimuli were contrasted with ignored stimuli in the first-level fMRI…

AdultMalegenetic structureseducationPrefrontal CortexElectroencephalographybehavioral disciplines and activities050105 experimental psychology03 medical and health sciencesSuperior temporal gyrusYoung Adult0302 clinical medicineMotor imagerySupramarginal gyrusParietal LobemedicineHumans0501 psychology and cognitive sciencesRadiology Nuclear Medicine and imagingAttentionResearch ArticlesBrain–computer interfaceCerebral CortexRadiological and Ultrasound Technologymedicine.diagnostic_testFunctional Neuroimaging05 social sciencesMotor CortexPutamenElectroencephalographyTraining effectEvent-Related Potentials P300Magnetic Resonance ImagingTemporal LobeNeurologySuperior frontal gyrusPractice PsychologicalBrain-Computer InterfacesAuditory PerceptionEvoked Potentials AuditoryFemaleNeurology (clinical)AnatomyPsychologyFunctional magnetic resonance imagingNeuroscience030217 neurology & neurosurgerypsychological phenomena and processes
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