To better understand the role of visual association cortex in perception and memory, we have been examining the multiple functional areas that comprise this cortex in the macaque and exploring the complex circuitry of their interconnections. In these studies, we have utilized neuroanatomical tracing techniques combined with electrophysiological recording as well as newly developed histological stains that, for the first time, clearly distinguish among the multiple visual areas. Our results indicate that the primary visual area, striate cortex, is the source of two cortical projection systems. The first system begins with the striate projections to the second and third visual areas, V2 and V3. Both V2 and V3 project in turn to V4. These three prestriate areas are arranged in adjacent belts that nearly surround the striate cortex, and, like the striate cortex, each belt contains a topographic map of the visual field. Area V4 projects in turn to the inferior temporal cortex. The second system begins with both striate and V2 projections to area MT, which is also topographically organized. However, in contrast to V4, which appears to provide a major link forward from striate cortex into the temporal lobe, our results on MT indicate that it provides a major link forward from striate cortex into the parietal lobe via its projections to four additional areas in the superior temporal and intraparietal sulci. Thus, one system of projections out of striate cortex is directed ventrally into the temporal lobe, while a second is directed dorsally into the parietal lobe. On the basis of evidence from our neurobehavioral work, we propose that these two systems mediate object vision and spatial vision, respectively. We have begun an analysis of human brain material with the goal of identifying visual areas homologous to the ones that we have delineated in the macaque.

Agency
National Institute of Health (NIH)
Institute
National Institute of Mental Health (NIMH)
Type
Intramural Research (Z01)
Project #
1Z01MH002035-05
Application #
4696437
Study Section
Project Start
Project End
Budget Start
Budget End
Support Year
5
Fiscal Year
1985
Total Cost
Indirect Cost
Name
U.S. National Institute of Mental Health
Department
Type
DUNS #
City
State
Country
United States
Zip Code
Tootell, Roger B H; Devaney, Kathryn J; Young, Jeremy C et al. (2008) fMRI mapping of a morphed continuum of 3D shapes within inferior temporal cortex. Proc Natl Acad Sci U S A 105:3605-9
Hadj-Bouziane, Fadila; Bell, Andrew H; Knusten, Tamara A et al. (2008) Perception of emotional expressions is independent of face selectivity in monkey inferior temporal cortex. Proc Natl Acad Sci U S A 105:5591-6
Heekeren, Hauke R; Marrett, Sean; Ungerleider, Leslie G (2008) The neural systems that mediate human perceptual decision making. Nat Rev Neurosci 9:467-79
Ungerleider, Leslie G; Galkin, Thelma W; Desimone, Robert et al. (2008) Cortical connections of area V4 in the macaque. Cereb Cortex 18:477-99
Mukai, Ikuko; Kim, David; Fukunaga, Masaki et al. (2007) Activations in visual and attention-related areas predict and correlate with the degree of perceptual learning. J Neurosci 27:11401-11
Siman-Tov, Tali; Mendelsohn, Avi; Schonberg, Tom et al. (2007) Bihemispheric leftward bias in a visuospatial attention-related network. J Neurosci 27:11271-8
Rossi, Andrew F; Bichot, Narcisse P; Desimone, Robert et al. (2007) Top down attentional deficits in macaques with lesions of lateral prefrontal cortex. J Neurosci 27:11306-14
Pessoa, Luiz; Japee, Shruti; Sturman, David et al. (2006) Target visibility and visual awareness modulate amygdala responses to fearful faces. Cereb Cortex 16:366-75
Heekeren, H R; Marrett, S; Ruff, D A et al. (2006) Involvement of human left dorsolateral prefrontal cortex in perceptual decision making is independent of response modality. Proc Natl Acad Sci U S A 103:10023-8
Pessoa, Luiz; Japee, Shruti; Ungerleider, Leslie G (2005) Visual awareness and the detection of fearful faces. Emotion 5:243-7

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