How we attend to objects and their features that cannot be separated by location is not understood. We presented two temporally and spatially overlapping streams of objects, faces versus houses, and used magnetoencephalography and functional magnetic resonance imaging to separate neuronal responses to attended and unattended objects. Attention to faces versus houses enhanced the sensory responses in the fusiform face area (FFA) and parahippocampal place area (PPA), respectively. The increases in sensory responses were accompanied by induced gamma synchrony between the inferior frontal junction, IFJ, and either FFA or PPA, depending on which object was attended. The IFJ appeared to be the driver of the synchrony, as gamma phases were advanced by 20 ms in IFJ compared to FFA or PPA. Thus, the IFJ may direct the flow of visual processing during object-based attention, at least in part through coupled oscillations with specialized areas such as FFA and PPA.

Neural mechanisms of object-based attention / Baldauf, Daniel; Desimone, Robert. - In: SCIENCE. - ISSN 0036-8075. - 344:6182(2014), pp. 424-427. [10.1126/science.1247003]

Neural mechanisms of object-based attention

Baldauf, Daniel;
2014-01-01

Abstract

How we attend to objects and their features that cannot be separated by location is not understood. We presented two temporally and spatially overlapping streams of objects, faces versus houses, and used magnetoencephalography and functional magnetic resonance imaging to separate neuronal responses to attended and unattended objects. Attention to faces versus houses enhanced the sensory responses in the fusiform face area (FFA) and parahippocampal place area (PPA), respectively. The increases in sensory responses were accompanied by induced gamma synchrony between the inferior frontal junction, IFJ, and either FFA or PPA, depending on which object was attended. The IFJ appeared to be the driver of the synchrony, as gamma phases were advanced by 20 ms in IFJ compared to FFA or PPA. Thus, the IFJ may direct the flow of visual processing during object-based attention, at least in part through coupled oscillations with specialized areas such as FFA and PPA.
2014
6182
Baldauf, Daniel; Desimone, Robert
Neural mechanisms of object-based attention / Baldauf, Daniel; Desimone, Robert. - In: SCIENCE. - ISSN 0036-8075. - 344:6182(2014), pp. 424-427. [10.1126/science.1247003]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11572/152233
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