Transcranial magnetic stimulation on the right dorsal attention network modulates the center-surround profile of the attentional focus

Author:

Massironi Andrea1ORCID,Lazzari Giorgio2ORCID,La Rocca Stefania1,Ronconi Luca34ORCID,Daini Roberta1,Lega Carlotta2ORCID

Affiliation:

1. Department of Psychology, University of Milano-Bicocca , Piazza dell'Ateneo Nuovo 1, 20126 Milan , Italy

2. Department of Brain and Behavioral Sciences, University of Pavia , Piazza Botta 6, 27100 Pavia , Italy

3. School of Psychology, Vita-Salute San Raffaele University , Via Olgettina 58, 20132 Milan , Italy

4. Division of Neuroscience, IRCCS San Raffaele Scientific Institute , 20132 Milan , Italy

Abstract

Abstract Psychophysical observations indicate that the spatial profile of visuospatial attention includes a central enhancement around the attentional focus, encircled by a narrow zone of reduced excitability in the immediate surround. This inhibitory ring optimally amplifies relevant target information, likely stemming from top-down frontoparietal recurrent activity modulating early visual cortex activations. However, the mechanisms through which neural suppression gives rise to the surrounding attenuation and any potential hemispheric specialization remain unclear. We used transcranial magnetic stimulation to evaluate the role of two regions of the dorsal attention network in the center-surround profile: the frontal eye field and the intraparietal sulcus. Participants performed a psychophysical task that mapped the entire spatial attentional profile, while transcranial magnetic stimulation was delivered either to intraparietal sulcus or frontal eye field on the right (Experiment 1) and left (Experiment 2) hemisphere. Results showed that stimulation of right frontal eye field and right intraparietal sulcus significantly changed the center-surround profile, by widening the inhibitory ring around the attentional focus. The stimulation on the left frontal eye field, but not left intraparietal sulcus, induced a general decrease in performance but did not alter the center-surround profile. Results point to a pivotal role of the right dorsal attention network in orchestrating inhibitory spatial mechanisms required to limit interference by surrounding distractors.

Funder

University of Milano-Bicocca

Publisher

Oxford University Press (OUP)

Subject

Cellular and Molecular Neuroscience,Cognitive Neuroscience

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