Spontaneous neuronal activity distinguishes human dorsal and ventral attention systems
- Michael D. Fox*,†,
- Maurizio Corbetta‡,
- Abraham Z. Snyder*,‡,
- Justin L. Vincent*, and
- Marcus E. Raichle*,†,‡,§,¶
- Departments of *Radiology,
- ‡Neurology,
- §Anatomy and Neurobiology, and
- ¶Biomedical Engineering, Washington University, St. Louis, MO 63110
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Contributed by Marcus E. Raichle, May 22, 2006
Abstract
On the basis of task-related imaging studies in normal human subjects, it has been suggested that two attention systems exist in the human brain: a bilateral dorsal attention system involved in top-down orienting of attention and a right-lateralized ventral attention system involved in reorienting attention in response to salient sensory stimuli. An important question is whether this functional organization emerges only in response to external attentional demands or is represented more fundamentally in the internal dynamics of brain activity. To address this question, we examine correlations in spontaneous fluctuations of the functional MRI blood oxygen level-dependent signal in the absence of task, stimuli, or explicit attentional demands. We identify a bilateral dorsal attention system and a right-lateralized ventral attention system solely on the basis of spontaneous activity. Further, we observe regions in the prefrontal cortex correlated with both systems, a potential mechanism for mediating the functional interaction between systems. These findings demonstrate that the neuroanatomical substrates of human attention persist in the absence of external events, reflected in the correlation structure of spontaneous activity.
Footnotes
- †To whom correspondence may be addressed. E-mail: foxm{at}npg.wustl.edu or marc{at}npg.wustl.edu
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Author contributions: M.D.F., M.C., and M.E.R. designed research; M.D.F. performed research; M.D.F., A.Z.S., and J.L.V. contributed new reagents/analytic tools; M.F. analyzed data; and M.D.F., M.C., A.Z.S., J.L.V., and M.E.R. wrote the paper.
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Conflict of interest statement: No conflicts declared.
- Abbreviations:
- BOLD,
- blood oxygen level-dependent;
- FEF,
- frontal eye field;
- IPS,
- intraparietal sulcus;
- SMA,
- supplementary motor area;
- TPJ,
- temporal-parietal junction;
- VFC,
- ventral frontal cortex
Abbreviations:
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Freely available online through the PNAS open access option.
- © 2006 by The National Academy of Sciences of the USA





