Studies in neuroscience inspired progress in the design of artificial neural networks (ANNs), and, vice versa, ANNs provide new insights into the functioning of brain circuits. So far, the focus has been on how ANNs can help to explain the tuning of neurons at various stages of the visual cortical hierarchy. However, the role of modulatory feedback connections, which play a role in attention and perceptual organization, has not yet been resolved. The present study presents a biologically plausible neural network that performs scene segmentation and can shift attention using modulatory feedback connections from higher to lower cortical brain areas. The model replicates several neurophysiological signatures of recurrent processing. Specifically, figural regions elicit more activity in model units than background regions. The modulation of activity by figure and ground occurs at a delay after the first feedforward response, because it depends on a loop through the higher model areas. Importantly, the figural response enhancement is amplified by object-based attention, which stays focused on the figural regions and does not spill over to the adjacent background, just as is observed in the visual cortex. Our results indicate how progress in artificial intelligence can be used to garner insight into the recurrent cortical processing for scene segmentation and object-based attention.

Modulatory feedback determines attentional object segmentation in a model of the ventral stream / Papale, Paolo; Williford, Jonathan R.; Balk, Stijn; Roelfsema, Pieter R.. - In: PLOS ONE. - ISSN 1932-6203. - 20:12(2025). [10.1371/journal.pone.0337087]

Modulatory feedback determines attentional object segmentation in a model of the ventral stream

Papale, Paolo
;
2025-01-01

Abstract

Studies in neuroscience inspired progress in the design of artificial neural networks (ANNs), and, vice versa, ANNs provide new insights into the functioning of brain circuits. So far, the focus has been on how ANNs can help to explain the tuning of neurons at various stages of the visual cortical hierarchy. However, the role of modulatory feedback connections, which play a role in attention and perceptual organization, has not yet been resolved. The present study presents a biologically plausible neural network that performs scene segmentation and can shift attention using modulatory feedback connections from higher to lower cortical brain areas. The model replicates several neurophysiological signatures of recurrent processing. Specifically, figural regions elicit more activity in model units than background regions. The modulation of activity by figure and ground occurs at a delay after the first feedforward response, because it depends on a loop through the higher model areas. Importantly, the figural response enhancement is amplified by object-based attention, which stays focused on the figural regions and does not spill over to the adjacent background, just as is observed in the visual cortex. Our results indicate how progress in artificial intelligence can be used to garner insight into the recurrent cortical processing for scene segmentation and object-based attention.
2025
Modulatory feedback determines attentional object segmentation in a model of the ventral stream / Papale, Paolo; Williford, Jonathan R.; Balk, Stijn; Roelfsema, Pieter R.. - In: PLOS ONE. - ISSN 1932-6203. - 20:12(2025). [10.1371/journal.pone.0337087]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11381/3047853
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