4.7 Article

Representational coding of overt and covert orienting of visuospatial attention in the frontoparietal network

期刊

NEUROIMAGE
卷 261, 期 -, 页码 -

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.neuroimage.2022.119499

关键词

Orienting of attention; Overt; Covert; Frontoparietal network

资金

  1. National Institute of Mental Health (NIMH) of the National Institutes of Health [NIH R01 MH094305]
  2. National Science Foundation [NSF IIS 1718802]

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The study found that overt and covert attention orientations are represented by interdependent functional clusters of neuronal populations in regions of the frontoparietal network, which may reflect a generalizable principle in the nervous system for the functional organization of closely associated processes.
Orienting of visuospatial attention refers to reallocation of attentional focus from one target or location to another and can occur either with (overt) or without (covert) eye movement. Although it has been demonstrated that both types of orienting commonly involve frontal and parietal brain regions as the frontoparietal network (FPN), the underlying representational coding of these two types of orienting remains unclear. In this functional magnetic resonance imaging study, participants performed a task that elicited overt and covert orienting to endogenously or exogenously cued targets with eye-tracking to monitor eye movement. Although the FPN was commonly acti-vated for both overt and covert orienting, multivariate patterns of the activation of voxels in the FPN accurately predicted whether eye movements were involved or not during orienting. These overt-and covert-preferred vox-els were topologically distributed as distinct and interlaced clusters in a millimeter scale. Inclusion of the two types of clusters predicted orienting type more accurately than one type of clusters alone. These findings suggest that overt and covert orienting are represented by interdependent functional clusters of neuronal populations in regions of the FPN, which might reflect a generalizable principle in the nervous system for functional organization of closely associated processes.

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