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Showing 1–6 of 6 results
Advanced filters: Author: Sara A. Solla Clear advanced filters
  • Gallego, Perich et al. report that latent dynamics in the neural manifold across three cortical areas are stable throughout years of consistent behavior. The authors posit that these dynamics are fundamental building blocks of learned behavior.

    • Juan A. Gallego
    • Matthew G. Perich
    • Lee E. Miller
    Research
    Nature Neuroscience
    Volume: 23, P: 260-270
  • How does the brain control the complex movements of hands? Here, by tracking human hand kinematics and applying multidimensional reduction techniques, the authors provide evidence that grasping involves a complex control system that regulates even the most subtle aspects of hand movement.

    • Yuke Yan
    • James M. Goodman
    • Sliman J. Bensmaia
    ResearchOpen Access
    Nature Communications
    Volume: 11, P: 1-8
  • Motor cortical neurons enable performance of a wide range of movements. Here, the authors report that dominant population activity patterns, the neural modes, are largely preserved across various tasks, with many displaying consistent temporal dynamics and reliably mapping onto muscle activity.

    • Juan A. Gallego
    • Matthew G. Perich
    • Lee E. Miller
    ResearchOpen Access
    Nature Communications
    Volume: 9, P: 1-13
  • One of the ambitions of computational neuroscience is that we will continue to make improvements in the field of artificial intelligence that will be informed by advances in our understanding of how the brains of various species evolved to process information. To that end, here the authors propose an expanded version of the Turing test that involves embodied sensorimotor interactions with the world as a new framework for accelerating progress in artificial intelligence.

    • Anthony Zador
    • Sean Escola
    • Doris Tsao
    ReviewsOpen Access
    Nature Communications
    Volume: 14, P: 1-7