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March 21, 2026Neuroscience & Biobehavioral Reviews0 citationsOpen Access

Cortical Mechanisms for Transsaccadic Vision:Extrinsic and Intrinsic Feature Updating

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BBBianca R. BaltaretuJCJ. Douglas Crawford

Key Points

  • This review aims to elucidate the cortical mechanisms underlying transsaccadic vision, focusing on how visual features are updated across eye movements.
  • Summarized computational challenges related to transsaccadic vision.
  • Reviewed psychophysical and neurophysiological evidence from various studies.
  • Combined functional magnetic resonance imaging (fMRI) adaptation and functional connectivity approaches in recent experiments.
  • Proposed a conceptual model of cortical feature integration and updating.
  • Identified specific cortical regions, including the right supramarginal gyrus for spatial orientation updating.
  • Found the dorsomedial occipital cortex (cuneus) is crucial for updating spatial frequency and object shape.
  • Supported the notion of an ‘extended parietal eye field’ for extrinsic spatial cue updating.

Abstract

Transsaccadic vision is typically described as the ability to retain and integrate visual information across rapid eye movements (saccades) for the purpose of continuous perception. In this review, we break this down further into two fundamental processes: the cortical mechanisms that maintain extrinsic spatial properties (i.e., location, orientation) versus intrinsic identity cues (i.e., spatial frequency, shape) of objects across saccades. First, we summarize the computational problems associated with transsaccadic vision, emphasizing the need to retain and integrate both extrinsic and intrinsic feature information between fixations for predictive vision. Next, we briefly review psychophysical, neurophysiological, stimulation, and neuroimaging evidence that specific cortical mechanisms exist for these processes. Then, we focus on our recent experiments combining functional magnetic resonance imaging adaptation-inspired and functional connectivity approaches. These experiments suggest that parietal cortex (specifically, right supramarginal gyrus) contributes to spatial updating of object orientation, whereas dorsomedial occipital cortex (cuneus) supports updating of spatial frequency and object shape. Taken together with the previous literature, this supports the notion that an ‘extended parietal eye field’ is involved in the updating of extrinsic spatial cues, whereas dorsomedial occipital cortex is involved in updating intrinsic cues to object identity, both in communication with the broader functional networks for perception and action. Finally, we synthesize these results in a simple conceptual model for cortical updating and integration of object features and consider the implications for future studies of transsaccadic integration, the ‘binding problem’, and possible clinical applications. • The role of transsaccadic vision is discussed in terms of updating and integrating both extrinsic spatial features and intrinsic identity cues. • Cortical mechanisms are reviewed for transsaccadic feature updating and memory, with emphasis on recent imaging and functional connectivity analysis. • A conceptual model is proposed with separate mechanisms for transsaccadic updating of extrinsic vs. intrinsic object features. • Future directions focus on conceptual progress and clinical applications.

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Cite This Study

Baltaretu et al. (2026) studied this question.

synapsesocial.com/papers/69be36086e48c4981c674b2bhttps://doi.org/10.1016/j.neubiorev.2026.106644
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