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Retinotopic organization in human visual cortex and the spatial precision of functional MRI

Cerebral Cortex · 1997 · Vol. 7(2) · pp. 181–192
Stephen A. Engel

Abstract

A method of using functional magnetic resonance imaging (fMRI) to measure retinotopic organization within human cortex is described. The method is based on a visual stimulus that creates a traveling wave of neural activity within retinotopically organized visual areas. We measured the fMRI signal caused by this stimulus in visual cortex and represented the results on images of the flattened cortical sheet. We used the method to locate visual areas and to evaluate the spatial precision of fMRI. Specifically, we: (i) identified the borders between several retinotopically organized visual areas in the posterior occipital lobe; (ii) measured the function relating cortical position to visual field eccentricity within area V1; (iii) localized activity to within 1.1 mm of visual cortex; and (iv) estimated the spatial resolution of the fMRI signal and found that signal amplitude falls to 60% at a spatial frequency of 1 cycle per 9 mm of visual cortex. This spatial resolution is consistent with a linespread whose full width at half maximum spreads across 3.5 mm of visual cortex.

Visual perception and processing mechanismsNeural dynamics and brain functionFunctional Brain Connectivity StudiesVisual cortexFunctional magnetic resonance imagingRetinotopyVisual N1Orientation columnNeuroscienceStimulus (psychology)Occipital lobeP200Visual field

MeSH terms

Brain MappingElectric StimulationHumansMagnetic Resonance ImagingMathematicsModels, AnatomicModels, NeurologicalNeuronsOccipital LobePattern Recognition, VisualRetinaTime FactorsVisual CortexVisual Fields

Funding

  • National Eye Institute
Citations
1,672
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DISTURBANCES OF VISION BY CEREBRAL LESIONS
British Journal of Ophthalmology · 1918 · 558 citations
Analysis of functional MRI time‐series
Human Brain Mapping · 1994 · 1,710 citations
The Representation of the Visual Field in Human Striate Cortex
Archives of Ophthalmology · 1991 · 733 citations
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