Direction-dependent visual cortex activation during horizontal optokinetic stimulation (fMRI study)
- 3 August 2005
- journal article
- Published by Wiley in Human Brain Mapping
- Vol. 27 (4) , 296-305
- https://doi.org/10.1002/hbm.20185
Abstract
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 compared with the control condition (stationary target) and with each other. Direction‐dependent differences were not found in the cortical eye fields, but an asymmetry of activation occurred in paramedian visual cortex areas, and there were stronger activations in the hemisphere contralateral to the slow OKN phase (pursuit). This can be explained by a shift of the mean eye position of gaze (beating field) in the direction of the fast nystagmus phases of approximately 2.6 degrees, causing asymmetrical visual cortex stimulation. The absence of a significant difference in the activation pattern of the cortical eye fields supports the view that the processing of eye movements in both horizontal directions is mediated in the same cortical ocular motor areas. Furthermore, no hemispheric dominance for OKN processing was found in right‐handed volunteers. Hum Brain Mapp, 2005.Keywords
This publication has 37 references indexed in Scilit:
- fMRI signal increases and decreases in cortical areas during small-field optokinetic stimulation and central fixationExperimental Brain Research, 2003
- Directional Asymmetry of Neurons in Cortical Areas MT and MST Projecting to the NOT-DTN in MacaquesJournal of Neurophysiology, 2002
- A Parametric fMRI Study of Overt and Covert Shifts of Visuospatial AttentionNeuroImage, 2001
- Eye Position Effects in Monkey Cortex. II. Pursuit- and Fixation-Related Activity in Posterior Parietal Areas LIP and 7AJournal of Neurophysiology, 1997
- Repeated measures in clinical trials: Analysis using mean summary statistics and its implications for designStatistics in Medicine, 1992
- A neuronal correlate of spatial stability during periods of self-induced visual motionExperimental Brain Research, 1991
- Localization and responses of neurones in the parieto‐insular vestibular cortex of awake monkeys (Macaca fascicularis).The Journal of Physiology, 1990
- Centrifugal directional bias in the middle temporal visual area (MT) of the macaqueVisual Neuroscience, 1989
- Problems in the Assessment of Hand PreferenceCortex, 1985
- Vestibular nuclei activity and eye movements in the alert monkey during sinusoidal optokinetic stimulationExperimental Brain Research, 1985