Literature DB >> 11586061

Functional magnetic resonance imaging of eye dominance at 4 tesla.

A Miki1, G T Liu, S A Englander, T G van Erp, G R Bonhomme, D O Aleman, C S Liu, J C Haselgrove.   

Abstract

We studied eye dominance in visual cortex and lateral geniculate nucleus (LGN) using functional magnetic resonance imaging (fMRI) at a very high magnetic field (4 tesla). Eight normal volunteers were studied with fMRI at 4 tesla during alternating monocular visual stimulation. The acquisition was repeated twice in 4 subjects to confirm reproducibility. In addition, magnetic resonance signal intensities during three conditions (right eye stimulation, left eye stimulation, and control condition) were compared to determine whether the observed area was truly or relatively monocular in 2 subjects. In both the individual and group analyses, the anterior striate cortex was consistently activated by the contralateral eye more than the ipsilateral eye. Additionally, we found evidence that there were areas in the bilateral LGN which were more active during the stimulation of the contralateral eye than during the stimulation of the ipsilateral eye. The activated areas were reproducible, and the mean ratio of the overlapping area was 0.71 for the repeated scans. The additional experiment revealed that the area in the anterior visual cortex could be divided into two parts, one truly monocular and the other relatively monocular. Our finding confirmed previous fMRI results at 1.5 tesla showing that eye dominance was observed in the contralateral anterior visual cortex. However, the eye dominance in the visual cortex was found not only in the most anterior area corresponding to the monocular temporal crescent but also in the more posterior area, presumably showing the greater sensitivity of the temporal visual field (nasal retina) as compared with the nasal visual field (temporal retina) in the peripheral visual field (peripheral retina). In addition, it is suggested that the nasotemporal asymmetry of the retina and the visual fields is represented in the LGN as well as in the visual cortex. Copyright 2001 S. Karger AG, Basel

Mesh:

Year:  2001        PMID: 11586061     DOI: 10.1159/000055681

Source DB:  PubMed          Journal:  Ophthalmic Res        ISSN: 0030-3747            Impact factor:   2.892


  7 in total

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Authors:  Janine D Mendola; Ian P Conner
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2.  Noninvasive measurement of the cerebral blood flow response in human lateral geniculate nucleus with arterial spin labeling fMRI.

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4.  Differential activation of cerebral blood flow by stimulating amblyopic and fellow eye.

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5.  Altered white matter structure in the visual system following early monocular enucleation.

Authors:  Nikita A Wong; Sara A Rafique; Krista R Kelly; Stefania S Moro; Brenda L Gallie; Jennifer K E Steeves
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6.  Altered anterior visual system development following early monocular enucleation.

Authors:  Krista R Kelly; Larissa McKetton; Keith A Schneider; Brenda L Gallie; Jennifer K E Steeves
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7.  Altered white matter structure in auditory tracts following early monocular enucleation.

Authors:  Nikita A Wong; Sara A Rafique; Stefania S Moro; Krista R Kelly; Jennifer K E Steeves
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  7 in total

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