New paper: Spinal circuitry modeled for locomotion using spatial transcriptomics and cell-type projections. Local excitation, long-range inhibition, and a longitudinal skew—an asymmetric "Mexican hat"—give rhythm, rotational dynamics, and gait, with no pacemakers. www.nature.com/articles/s41...
William Nourse
@wnourse.bsky.social
A postdoc working at the intersection of NeuroAI, Robotics, and Neuromorphic Computing.
How can we generate controllable polar trajectories on neuromorphic hardware? Check out our new pre-print on arXiv to find out all the details, and read the rest of the thread for an overview (1/11): doi.org/10.48550/arX... #neuroAI #CompNeuro #pre-print #neuroskyence #neuromorphic
so I just realized I forgot to #skeetprint my Contactomes paper... (is that what we're calling it?) www.biorxiv.org/content/10.6... @kordinglab.bsky.social @dacolon.bsky.social smithneurallab.weebly.com @jhuapl.bsky.social #academicsky #preprint #neuroscience
It’s always an exciting day to see a neuromorphic system on the cover of Nature! Event-based vision is here to stay, now our community needs to show the advantages that neuromorphic approaches can bring to all the other levels of the stack…
A paper in Nature describes an AI-based robotic system capable of outperforming elite table tennis players, developed by Sony AI. The results demonstrate the potential of robotic systems to perform complex, real-time interactive tasks. go.nature.com/4vMcgqT 🧪