Retinotopy and Functional Subdivision of Human Areas MT and MST
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Open Access
- 15 August 2002
- journal article
- clinical trial
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 22 (16) , 7195-7205
- https://doi.org/10.1523/jneurosci.22-16-07195.2002
Abstract
We performed a series of functional magnetic resonance imaging experiments to divide the human MT+ complex into subregions that may be identified as homologs to a pair of macaque motion-responsive visual areas: the middle temporal area (MT) and the medial superior temporal area (MST). Using stimuli designed to tease apart differences in retinotopic organization and receptive field size, we established a double dissociation between two distinct MT+ subregions in 8 of the 10 hemispheres studied. The first subregion exhibited retinotopic organization but did not respond to peripheral ipsilateral stimulation, indicative of smaller receptive fields. Conversely, the second subregion within MT+ did not demonstrate retinotopic organization but did respond to peripheral stimuli in both the ipsilateral and contralateral visual hemifields, indicative of larger receptive fields. We tentatively identify these subregions as the human homologues of macaque MT and MST, respectively. Putative human MT and MST were typically located on the posterior/ventral and anterior/dorsal banks of a dorsal/posterior limb of the inferior temporal sulcus, similar to their relative positions in the macaque superior temporal sulcus.Keywords
This publication has 56 references indexed in Scilit:
- Pattern-motion responses in human visual cortexNature Neuroscience, 2001
- Where is 'Dorsal V4' in Human Visual Cortex? Retinotopic, Topographic and Functional EvidenceCerebral Cortex, 2001
- Investigation of Low Frequency Drift in fMRI SignalNeuroImage, 1999
- Retinotopic organization in human visual cortex and the spatial precision of functional MRICerebral Cortex, 1997
- Lesions of the Superior Temporal Cortical Motion Areas Impair Speed Discrimination in the Macaque MonkeyEuropean Journal of Neuroscience, 1995
- Borders of Multiple Visual Areas in Humans Revealed by Functional Magnetic Resonance ImagingScience, 1995
- Anatomical Evidence for MT and Additional Cortical Visual Areas in HumansCerebral Cortex, 1995
- Cortical afferents of visual area MT in the Cebus monkey: Possible homologies between New and old World monkeysVisual Neuroscience, 1993
- Subcortical connections of visual areas MST and FST in macaquesVisual Neuroscience, 1992
- Cortical connections of visual area MT in the macaqueJournal of Comparative Neurology, 1986