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Mapping the functional and structural connectivity of the scene network.

David M Watson1, Timothy J Andrews1

  • 1Department of Psychology and York Neuroimaging Centre, University of York, York, UK.

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Summary

This study maps the brain's scene network, revealing distinct functional and structural connections. Posterior regions link to visual processing, while anterior regions connect to memory and control networks.

Keywords:
diffusion MRIfMRIfunctional connectivitynaturalistic imagingscene perceptionstructural connectivity

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Area of Science:

  • Neuroscience
  • Cognitive Neuroscience
  • Neuroimaging

Background:

  • The human brain possesses scene-selective regions crucial for place recognition and perception.
  • Prior research primarily explored functional connectivity within this scene network, with limited understanding of its broader connections.

Purpose of the Study:

  • To comprehensively map the functional and structural connectivity of the scene perception network.
  • To investigate how scene-selective regions connect with other cortical and subcortical brain areas.

Main Methods:

  • Utilized functional Magnetic Resonance Imaging (fMRI) during rest and movie-watching to assess functional connectivity.
  • Employed diffusion tractography to determine structural connectivity of the scene network.
  • Quantified connectivity between scene regions and major white matter tracts.

Main Results:

  • Identified distinct connectivity patterns within the scene network, differentiating posterior (perceptual) and anterior (mnemonic) regions.
  • Observed specific connections of the Occipital Place Area (OPA) and Parahippocampal Place Area (PPA) with visual, attention, default mode, and control networks, as well as the hippocampus.
  • Structural connectivity revealed similarities and differences with functional connectivity, showing biases between posterior/anterior and ventral/dorsal scene regions.

Conclusions:

  • The scene network exhibits complex functional and structural connectivity biases, differentiating posterior and anterior regions.
  • These findings provide a detailed map of the scene network's integration with broader brain systems, aiding understanding of spatial cognition and memory.