Search results for "Laterality"

showing 10 items of 307 documents

Quantitative investigations on the human entorhinal area: left-right asymmetry and age-related changes

1994

The total nerve cell numbers in the right and in the left human entorhinal areas have been calculated by volume estimations with the Cavalieri principle and by cell density determinations with the optical disector. Thick gallocyanin-stained serial frozen sections through the parahippocampal gyrus of 22 human subjects (10 female, 12 male) ranging from 18 to 86 years were analysed. The laminar composition of gallocyanin (Nissl)-stained sections could easily be compared with Braak's (1972, 1980) pigmentoarchitectonic study, and Braak's nomenclature of the entorhinal laminas was adopted. Cell-sparse laminae dissecantes can more clearly be distinguished in Nissl than in aldehydefuchsin preparati…

AdultMaleAgingEmbryologyLaminaAdolescentCell CountContext (language use)BiologyFunctional Lateralitysymbols.namesakeAge relatedmedicineEntorhinal CortexHumansAgedAged 80 and overNeuronsCell BiologyAnatomyMiddle AgedEntorhinal cortexmedicine.anatomical_structureCavalieri's principleLateralityNissl bodysymbolsFemaleAnatomyParahippocampal gyrusDevelopmental BiologyAnatomy and Embryology
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Asymmetry in dopamine D2/3 receptors of caudate nucleus is lost with age

2007

Molecular and functional imaging techniques reveal evidence for lateralization of human cerebral function. Based on animal data, we hypothesized that asymmetry in dopamine neurotransmission declines during normal aging. In order to test this hypothesis, we measured dopamine D2/3 receptor availability with [18F]desmethoxyfallypride-PET (DMFP) in putamen and caudate nucleus (NC) of 21 healthy, right-handed males (24-60 years; 35+/-10). For volumetric analysis, high-resolution T1-weighted MR-images were obtained in 18 of the PET-subjects in order to assess possible age-related decreases in NC and putamen volume. The calculated DMFP binding potentials (BP) showed a right-ward asymmetry in NC of…

AdultMaleAgingmedicine.medical_specialtyCognitive NeuroscienceCaudate nucleusNeurotransmissionFunctional LateralityLateralization of brain functionAnimal dataDopamineDopamine receptor D2Internal medicineSalicylamidesmedicineHumansTissue DistributionReceptors Dopamine D2PutamenReceptors Dopamine D3Middle AgedEndocrinologyNeurologyDopamine receptorPositron-Emission TomographyCaudate NucleusRadiopharmaceuticalsPsychologyNeurosciencemedicine.drugNeuroImage
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Illusory contours and specific regions of human extrastriate cortex: evidence from rTMS.

2003

Functional magnetic resonance imaging studies showed that perception of illusory contours is associated with extrastriate cortex activation prevailing on the right side. 1 Hz repetitive transcranial magnetic stimulation (rTMS) is able to induce lasting inhibition of cortical activity. The objective of the study was to investigate the role of extrastriate cortex in illusory contour perception inducing 1 Hz rTMS interference in healthy subjects. Eight healthy subjects underwent 1 Hz rTMS (600 pulses) through a figure-of-eight coil over right and left occipital cortex (O1 and O2 of 10/20 EEG system); sham magnetic stimulation on the same sites and right motor cortex rTMS (in three subjects) we…

AdultMaleBrain Mappingextrastriate cortexillusory contoursOptical IllusionsMotor CortexMiddle AgedMagnetic Resonance ImagingElectric StimulationFunctional LateralityForm PerceptionMagneticsrTMSReaction TimeHumansFemaleOccipital LobePhotic StimulationThe European journal of neuroscience
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Differential impact of continuous theta-burst stimulation over left and right DLPFC on planning

2011

Most neuroimaging studies on planning report bilateral activations of the dorsolateral prefron- tal cortex (dlPFC). Recently, these concurrent activations of left and right dlPFC have been shown to dou- ble dissociate with different cognitive demands imposed by the planning task: Higher demands on the extraction of task-relevant information led to stronger activation in left dlPFC, whereas higher demands on the integration of interdependent information into a coherent action sequence entailed stronger activa- tion of right dlPFC. Here, we used continuous theta-burst stimulation (cTBS) to investigate the supposed causal structure-function mapping underlying this double dissociation. Two grou…

AdultMaleCTBSPrefrontal CortexPosterior parietal cortexStimulationbehavioral disciplines and activitiesFunctional LateralityLateralization of brain functionYoung AdultCognitionNeuroimagingParietal LobeCortex (anatomy)Reaction TimemedicineHumansRadiology Nuclear Medicine and imagingTheta RhythmPrefrontal cortexResearch ArticlesBrain MappingRadiological and Ultrasound TechnologyCognitionMagnetic Resonance ImagingTranscranial Magnetic Stimulationmedicine.anatomical_structureNeurologyFemaleNeurology (clinical)AnatomyPsychologyNeurosciencePsychomotor Performancepsychological phenomena and processesHuman Brain Mapping
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Cognitive and Motor Loops of the Human Cerebro-cerebellar System

2010

Abstract We applied fMRI and diffusion-weighted MRI to study the segregation of cognitive and motor functions in the human cerebro-cerebellar system. Our fMRI results show that a load increase in a nonverbal auditory working memory task is associated with enhanced brain activity in the parietal, dorsal premotor, and lateral prefrontal cortices and in lobules VII–VIII of the posterior cerebellum, whereas a sensory-motor control task activated the motor/somatosensory, medial prefrontal, and posterior cingulate cortices and lobules V/VI of the anterior cerebellum. The load-dependent activity in the crus I/II had a specific relationship with cognitive performance: This activity correlated negat…

AdultMaleCerebellumBrain activity and meditationMovementCognitive NeuroscienceStatistics as TopicSomatosensory systemFunctional Laterality050105 experimental psychologyYoung Adult03 medical and health sciencesCognition0302 clinical medicineCerebellumNeural PathwaysImage Processing Computer-AssistedReaction TimemedicineHumansta3180501 psychology and cognitive sciencesEffects of sleep deprivation on cognitive performanceta116ta515ta217Cerebral Cortexta113Brain Mappingta114Working memory05 social sciencesCognitionMagnetic Resonance ImagingOxygenDiffusion Magnetic Resonance Imagingmedicine.anatomical_structureAcoustic Stimulationnervous systemFemalePsychologyNeuroscience030217 neurology & neurosurgeryCognitive loadTractographyJournal of Cognitive Neuroscience
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Repetitive TMS of cerebellum interferes with millisecond time processing

2007

Time processing is important in several cognitive and motor functions, but it is still unclear how the human brain perceives time intervals of different durations. Processing of time in millisecond and second intervals may depend on different neural networks and there is now considerable evidence to suggest that these intervals are possibly measured by independent brain mechanisms. Using repetitive transcranial magnetic stimulation (rTMS), we determined that the cerebellum is essential in explicit temporal processing of millisecond time intervals. In the first experiment, subjects' performance in a time reproduction task of short (400-600 ms) and long (1,600-2,400 ms) intervals, were evalua…

AdultMaleCerebellumData InterpretationTime perception; Timing; Transcranial magnetic stimulation; rTMS; Cerebellummedicine.medical_treatmentPrefrontal CortexStimulationTime perception Timing Transcranial magnetic stimulation rTMS CerebellumMagnetic Resonance Imaging; Humans; Adult; Cerebellum; Time Perception; Data Interpretation Statistical; Prefrontal Cortex; Transcranial Magnetic Stimulation; Male; Functional Laterality; FemaleFunctional LateralityNOCerebellum; rTMS; Time perception; Timing; Transcranial magnetic stimulation;CerebellumrTMSmedicineHumansTimingPrefrontal cortexMillisecondNeuroscience (all)Settore M-PSI/02 - Psicobiologia E Psicologia Fisiologicamusculoskeletal neural and ocular physiologyGeneral NeuroscienceMemoriaHuman brainTime perceptionStatisticalMagnetic Resonance ImagingTranscranial Magnetic StimulationTranscranial magnetic stimulationmedicine.anatomical_structurenervous systemData Interpretation StatisticalTime PerceptionFemaleSettore MED/26 - NeurologiaPsychologyNeuroscienceHuman
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Changes in cerebellar activation pattern during two successive sequences of saccades

2002

The changes in the cerebellar activation pattern of two successive fMRI scanning runs were determined for visually guided to‐and‐fro saccades in 12 healthy volunteers familiar with the study paradigm. Group and single subject‐analyses revealed a constant activation of the paramedian cerebellar vermis (uvula, tonsils, tuber, folium/declive), which reflects constant ocular motor activity in both runs. A significant decrease in activation of the cerebellar hemispheres found in the second run is best explained by either a decrease in attention or the effects of motor optimization and learning. The significant, systematic changes of the cerebellar activation pattern in two successive runs were n…

AdultMaleCerebellumOcular motorAction PotentialsStimulationFunctional LateralityActivation patternCerebellar CortexReaction TimeSaccadesmedicineHumansRadiology Nuclear Medicine and imagingFastigial nucleusBrain MappingRadiological and Ultrasound TechnologyVisually guidedEye movementOriginal ArticlesMiddle AgedMagnetic Resonance Imagingmedicine.anatomical_structureNeurologyCerebrovascular CirculationCerebellar vermisFemaleNeurology (clinical)AnatomyPsychologyNeurosciencePhotic StimulationPsychomotor PerformanceHuman Brain Mapping
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Increased facilitation of the primary motor cortex following 1 Hz repetitive transcranial magnetic stimulation of the contralateral cerebellum in nor…

2005

Connections between the cerebellum and the contralateral motor cortex are dense and important, but their physiological significance is difficult to measure in humans. We have studied a group of 10 healthy subjects to test whether a modulation of the excitability of the left cerebellum can affect the excitability of the contralateral motor cortex. We used repetitive transcranial magnetic stimulation (rTMS) at 1 Hz frequency to transiently depress the excitability of the left cerebellar cortex and paired-pulse TMS testing of intracortical inhibition (ICI) and intracortical facilitation (ICF) to probe the excitability of cortico-cortical connections in the right motor cortex. The cortical sile…

AdultMaleCerebellumTMS Cerebellum Motor cortex Motor evoked potentialsmedicine.medical_treatmentbehavioral disciplines and activitiesSynaptic TransmissionMotor evoked potentialsFunctional LateralityNOCerebellar CortexPurkinje CellsCerebellum; Motor cortex; Motor evoked potentials; TMS;Reference ValuesCerebellumNeural PathwaysmedicineReaction TimeHumansEvoked PotentialsSettore M-PSI/02 - Psicobiologia E Psicologia Fisiologicamusculoskeletal neural and ocular physiologyGeneral NeuroscienceInterstimulus intervalMotor CortexNeural InhibitionEvoked Potentials MotorTranscranial Magnetic StimulationElectric StimulationTranscranial magnetic stimulationElectrophysiologyReference Values; Humans; Cerebellum; Neural Inhibition; Electric Stimulation; Cerebellar Cortex; Purkinje Cells; Motor Cortex; Evoked Potentials Motor; Adult; Neural Pathways; Transcranial Magnetic Stimulation; Synaptic Transmission; Female; Functional Laterality; Male; Reaction Time; Cerebellar Nucleimedicine.anatomical_structurenervous systemMotorCerebellar NucleiTMSCerebellar cortexSilent periodSettore MED/26 - NeurologiaFemalePrimary motor cortexPsychologyNeurosciencepsychological phenomena and processesMotor cortexNeuroscience letters
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Role of the cerebellum in time perception: A TMS study in normal subjects

2007

The aim of this study was to investigate the role of the cerebellum in a temporal-discrimination task without movement production in healthy subjects. Ten healthy subjects underwent a time-perception task with somatosensory stimuli. Two pairs of electrical stimuli: the first considered the reference pair (rp) with a standard interval of 400 ms and the second, the test pair (tp), with variable intervals ranging from 300 to 500 ms, were applied by surface electrodes on the right forearm. Subjects were instructed to compare time intervals of rp and tp and to estimate whether the tp interval was shorter than, equal to, or longer than that of rp. The task was performed in baseline and after 1 Hz…

AdultMaleCerebellummedicine.medical_specialtyTime FactorsAdolescentmedicine.medical_treatmentTime perceptionNeuropsychological TestsAudiologySomatosensory stimuliSomatosensory systembehavioral disciplines and activitiesFunctional LateralityDiscrimination PsychologicalCognitionCerebellumCerebellar hemispheremedicineHumansAnalysis of VarianceCognitionTime perceptionTranscranial Magnetic StimulationElectric StimulationTime intervalTranscranial magnetic stimulationInterval (music)medicine.anatomical_structurenervous systemNeurologyTMSFemaleSettore MED/26 - NeurologiaNeurology (clinical)Analysis of variancePsychologyNeurosciencepsychological phenomena and processesJournal of the Neurological Sciences
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Overestimation of numerical distances in the left side of space

2004

Normal subjects presented with a middle number and two left- and right-sided outer numbers overestimate the numerical distance between the middle number and that positioned at its left side. Repetitive transcranial magnetic stimulation (rTMS) of the right posterior parietal cortex specifically counteracts this bias, suggesting that the mental representation of space defined by numbers is shifted toward the left side depending on a greater activity of the right hemisphere.

AdultMaleCerebralmedicine.medical_treatmentPosterior parietal cortexSpace (mathematics)Functional LateralityNOMagneticsReference ValuesParietal LobemedicineHumansRight hemisphereDominance CerebralDominanceMathematicsDistance PerceptionAnatomyTranscranial magnetic stimulationReference valuesRight posteriorSettore MED/26 - NeurologiaFemaleNeurology (clinical)Reference Values; Magnetics; Humans; Adult; Distance Perception; Dominance Cerebral; Parietal Lobe; Male; Functional Laterality; Female; MathematicsNeuroscienceMathematics
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