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Showing 1–6 of 6 results
Advanced filters: Author: Jennifer M. Groh Clear advanced filters
  • Treue and colleagues use electrophysiological recordings in monkeys and psychophysical experiments in humans to suggest that the shape of a population response in a motion sensitive region of the brain (area MT), rather than the peak of the response, determines motion perception.

    • Jennifer M. Groh
    News & Views
    Nature Neuroscience
    Volume: 3, P: 201-202
  • Trained on large and multicenter datasets with different imaging modalities, a foundation model is shown to have strong performance on the full spectrum of clinically relevant tasks and to increase user accuracy in diagnostic tasks.

    • Siyuan Yan
    • Zhen Yu
    • Zongyuan Ge
    ResearchOpen Access
    Nature Medicine
    Volume: 31, P: 2691-2702
  • The neural mechanisms through which neurons represent simultaneously presented stimuli are not well understood. Here the authors demonstrate that the two stimuli are alternately encoded through fluctuations in the activity patterns of single neurons.

    • Valeria C. Caruso
    • Jeff T. Mohl
    • Jennifer M. Groh
    ResearchOpen Access
    Nature Communications
    Volume: 9, P: 1-16
  • Three techniques for estimating mass losses from the Greenland Ice Sheet produce comparable results for the period 1992–2018 that approach the trajectory of the highest rates of sea-level rise projected by the IPCC.

    • Andrew Shepherd
    • Erik Ivins
    • Jan Wuite
    Research
    Nature
    Volume: 579, P: 233-239