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March 21, 2026Cell Reports1 citationsOpen Access

De novo fast motion computation in the primate visual cortex

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KHKeyan HeCenter for Excellence in Brain Science and Intelligence TechnologyLLL. LiuCenter for Excellence in Brain Science and Intelligence TechnologyJLJunxiang LuoNational Institutes of Natural Sciences

Key Points

  • Investigate how primate visual cortex computes motion perception and retains direction selectivity at various velocities.
  • Recorded neuronal responses in areas including V1, MT, and MST of macaques
  • Used moving dots, gratings, and movies as stimuli
  • Applied a spatiotemporal integration model to analyze direction-selective neurons
  • V1 neurons lost direction selectivity at approximately 29°/s
  • MT and MST neurons maintained selectivity up to about 82°/s and 183°/s, respectively
  • The model suggests velocity selectivity can be generated de novo through integration of visuotopic activations

Abstract

Summary Objects move through space and time, generating sequential visuotopic activations in all sighted animals, leading to velocity perception defined by direction and speed. The primary visual cortex (V1) only encodes directionality at low speed, yet we effortlessly perceive velocities ranging from 0.25°/s to 500°/s. To resolve this paradox, we recorded neuronal responses to moving dots, gratings, and movies across the lateral geniculate nucleus (LGN), V1, middle temporal (MT) area, and medial superior temporal (MST) area of the macaque motion pathway. Regardless of cell type and motion stimuli, V1 neurons lost direction selectivity at ∼29°/s, while MT and MST neurons maintained it up to ∼82°/s and ∼183°/s, respectively. A cascaded spatiotemporal integration model reveals that at each cortex, direction-selective neurons can generate velocity selectivity de novo by integrating sequential visuotopic activations from preceding areas, irrespective of speed and directionality. Computing velocity anew by shifting "gears" within the motion hierarchy offers insights for information processing in other species, modalities, and machine vision.

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Cite This Study

He et al. (2026) studied this question.

synapsesocial.com/papers/69be37626e48c4981c676fc0https://doi.org/10.1016/j.celrep.2026.117080
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