about
Frontal eye field, where art thou? Anatomy, function, and non-invasive manipulation of frontal regions involved in eye movements and associated cognitive operationsEffects of visual working memory on brain information processing of irrelevant auditory stimuli.Distinct control of initiation and metrics of memory-guided saccades and vergence by the FEF: a TMS study.Medio-frontal and anterior temporal abnormalities in children with attention deficit hyperactivity disorder (ADHD) during an acoustic antisaccade task as revealed by electro-cortical source reconstruction.Spatial attention and neglect: parietal, frontal and cingulate contributions to the mental representation and attentional targeting of salient extrapersonal events.Abnormalities of fixation, saccade and pursuit in posterior cortical atrophyThe Davida Teller Award Lecture, 2016: Visual Brain Development: A review of "Dorsal Stream Vulnerability"-motion, mathematics, amblyopia, actions, and attention.Saccade disturbances after bilateral lentiform nucleus lesions in humans.Location of the human posterior eye field with functional magnetic resonance imagingSlowed Prosaccades and Increased Antisaccade Errors As a Potential Behavioral Biomarker of Multiple System Atrophy.Smooth pursuit and saccadic eye movement performance in a prefrontal leukotomy patient.Altered error processing following vascular thalamic damage: evidence from an antisaccade task.Optic ataxia as a result of the breakdown of the global tuning fields of parietal neurones.Dissociating bottom-up and top-down processes in a manual stimulus-response compatibility task.The role of the brain's frontal eye fields in constructing frame of reference.Abnormal mechanisms of antisaccade generation in schizophrenia patients and unaffected biological relatives of schizophrenia patientsEnhanced facilitation of spatial attention in schizophrenia.Cortical sources of event-related potentials in the prosaccade and antisaccade taskAbnormal error-related antisaccade activation in premanifest and early manifest Huntington disease.Control of the superior colliculus by the lateral prefrontal cortex.Saccadic latency in Parkinson's disease correlates with executive function and brain atrophy, but not motor severity.A unified comparison of stimulus-driven, endogenous mandatory and 'free choice' saccades.Saccadic performance characteristics and the behavioural neurology of Tourette's syndromeDeficient saccadic inhibition in Asperger's disorder and the social-emotional processing disorder.Motor role of parietal cortex in a monkey model of hemispatial neglect.Saccadic latency distributions in Parkinson's disease and the effects of L-dopaWhere left becomes right: a magnetoencephalographic study of sensorimotor transformation for antisaccades.Anti-saccade error rates as a measure of attentional bias in cocaine dependent subjects.An fMRI Investigation of Preparatory Set in the Human Cerebral Cortex and Superior Colliculus for Pro- and Anti-Saccades.Perimetric evaluation of saccadic latency, saccadic accuracy, and visual threshold for peripheral visual stimuli in young compared with older adultsDissociable Roles of Dorsolateral Prefrontal Cortex and Frontal Eye Fields During Saccadic Eye MovementsEye-Movement Training Results in Changes in qEEG and NIH Stroke Scale in Subjects Suffering from Acute Middle Cerebral Artery Ischemic Stroke: A Randomized Control Trial.Oculomotor function in frontotemporal lobar degeneration, related disorders and Alzheimer's diseaseThe Initiation of Smooth Pursuit is Delayed in Anisometropic AmblyopiaMedial versus lateral frontal lobe contributions to voluntary saccade control as revealed by the study of patients with frontal lobe degenerationThe parietal cortex and saccade planning: lessons from human lesion studiesDisruption of Fixation Reveals Latent Sensorimotor Processes in the Superior Colliculus.Specific saccade deficits in patients with Alzheimer's disease at mild to moderate stage and in patients with amnestic mild cognitive impairmentVisual extinction: the effect of temporal and spatial biasNeurophysiology and neuroanatomy of reflexive and volitional saccades: evidence from studies of humans.
P2860
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P2860
description
1991 nî lūn-bûn
@nan
1991年の論文
@ja
1991年学术文章
@wuu
1991年学术文章
@zh
1991年学术文章
@zh-cn
1991年学术文章
@zh-hans
1991年学术文章
@zh-my
1991年学术文章
@zh-sg
1991年學術文章
@yue
1991年學術文章
@zh-hant
name
Cortical control of reflexive visually-guided saccades.
@en
Cortical control of reflexive visually-guided saccades.
@nl
type
label
Cortical control of reflexive visually-guided saccades.
@en
Cortical control of reflexive visually-guided saccades.
@nl
prefLabel
Cortical control of reflexive visually-guided saccades.
@en
Cortical control of reflexive visually-guided saccades.
@nl
P2093
P356
P1433
P1476
Cortical control of reflexive visually-guided saccades.
@en
P2093
Pierrot-Deseilligny C
P304
P356
10.1093/BRAIN/114.3.1473
P407
P478
114 ( Pt 3)
P50
P577
1991-06-01T00:00:00Z