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  Parietal cortex mediates perceptual Gestalt grouping independent of stimulus size

Grassi, P. R., Zaretskaya, N., & Bartels, A. (2015). Parietal cortex mediates perceptual Gestalt grouping independent of stimulus size. Poster presented at 16th Conference of Junior Neuroscientists of Tübingen (NeNa 2015): Communicating the Challenges of Science, Schramberg, Germany.

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Grassi, Pablo Rodrigo1, Author           
Zaretskaya, N2, Author           
Bartels, Andreas1, Author           
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1Department Physiology of Cognitive Processes, Max Planck Institute for Biological Cybernetics, Max Planck Society, ou_1497798              
2Department High-Field Magnetic Resonance, Max Planck Institute for Biological Cybernetics, Max Planck Society, ou_1497796              

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 Abstract: The integration of local moving elements into a unified Gestalt percept has previously been linked to the posterior parietal cortex. There are two possible interpretations for the lack of involvement of other occipital regions. The first is that parietal cortex is indeed uniquely functionally specialized to perform grouping. Another possibility is that other visual regions can perform grouping as well, but that the large spatial separation of the local elements used previously exceeded their neurons' receptive field (RF) sizes, preventing their involvement. In this study we distinguished between these two alternatives. We measured whole-brain activity using fMRI in response to a bistable motion illusion that induced mutually exclusive percepts of either an illusory global Gestalt or of local elements. The stimulus was presented in two sizes, a large version known to activate IPS only, and a version sufficiently small to fit into the RFs of mid-level dorsal regions such as V5/MT. We found that none of the separately localized motion regions apart from parietal cortex showed a preference for global Gestalt perception, even for the smaller version of the stimulus. This outcome suggests that grouping is mediated by a specialized size-invariant mechanism with parietal cortex as its anatomical substrate.

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 Dates: 2015-11-23
 Publication Status: Issued
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Title: 16th Conference of Junior Neuroscientists of Tübingen (NeNa 2015): Communicating the Challenges of Science
Place of Event: Schramberg, Germany
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Title: 16th Conference of Junior Neuroscientists of Tübingen (NeNa 2015): Communicating the Challenges of Science
Source Genre: Proceedings
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Pages: - Volume / Issue: - Sequence Number: - Start / End Page: 43 - 43 Identifier: -