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#biohybrid — Public Fediverse posts

Live and recent posts from across the Fediverse tagged #biohybrid, aggregated by home.social.

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  1. Microalgae empower skeletal muscle for robots. I think this is very much the way to Moray from Quastionable Content.
    (from the same issue of Science Advances as this morning)

    Link: science.org/doi/10.1126/sciadv

    #SciFiScience #Robotics #biohybrid

  2. Microalgae empower skeletal muscle for robots. I think this is very much the way to Moray from Quastionable Content.
    (from the same issue of Science Advances as this morning)

    Link: science.org/doi/10.1126/sciadv

    #SciFiScience #Robotics #biohybrid

  3. Microalgae empower skeletal muscle for robots. I think this is very much the way to Moray from Quastionable Content.
    (from the same issue of Science Advances as this morning)

    Link: science.org/doi/10.1126/sciadv

    #SciFiScience #Robotics #biohybrid

  4. Microalgae empower skeletal muscle for robots. I think this is very much the way to Moray from Quastionable Content.
    (from the same issue of Science Advances as this morning)

    Link: science.org/doi/10.1126/sciadv

    #SciFiScience #Robotics #biohybrid

  5. Somewhere between dialysis, data centers, and forest floors, there’s probably a better way to think about human–machine interfaces.

    Mycelium as middleware. 🍄⚙️🧠

    #BioHybrid #SystemsThinking #HMI #Fungi
    @PaulStamets
    Mycelium as Interface blueribbonteam.com/blog/2026/0

  6. A “biohybrid” robotic hand built using real human muscle cells - arstechnica.com/science/2025/0 "Out of all the roadblocks that keep us from building large-scale #biohybrid #robots, necrosis has probably been the most difficult to overcome."

  7. A “biohybrid” robotic hand built using real human muscle cells - arstechnica.com/science/2025/0 "Out of all the roadblocks that keep us from building large-scale #biohybrid #robots, necrosis has probably been the most difficult to overcome."

  8. A “biohybrid” robotic hand built using real human muscle cells - arstechnica.com/science/2025/0 "Out of all the roadblocks that keep us from building large-scale #biohybrid #robots, necrosis has probably been the most difficult to overcome."

  9. A “biohybrid” robotic hand built using real human muscle cells - arstechnica.com/science/2025/0 "Out of all the roadblocks that keep us from building large-scale #biohybrid #robots, necrosis has probably been the most difficult to overcome."

  10. #Coches | FIAT estrena su primer motor Bio-Hybrid, ¿la electrificación del etanol es el futuro de la eficiencia en Europa?<br />
    <br />
    @FiatBR #FIAT #BioHybrid #MotoresdeCoches

    motor.es/noticias/fiat-motor-h

  11. Neuro-robotic experiments are fascinating. I remember the excitement when this team (almost 25 years ago) connected a lamprey fish’s brain to a robotic system. It was able to move its ‘vehicle’ towards lights. news.bbc.co.uk/1/hi/sci/tech/1

    But for obvious reasons, fungi are another thing entirely.

    #robotics #Neuroscience #Biohybrid #neurorobotics #lamprey #technology #science #cybernetics

  12. Neuro-robotic experiments are fascinating. I remember the excitement when this team (almost 25 years ago) connected a lamprey fish’s brain to a robotic system. It was able to move its ‘vehicle’ towards lights. news.bbc.co.uk/1/hi/sci/tech/1

    But for obvious reasons, fungi are another thing entirely.

    #robotics #Neuroscience #Biohybrid #neurorobotics #lamprey #technology #science #cybernetics

  13. Neuro-robotic experiments are fascinating. I remember the excitement when this team (almost 25 years ago) connected a lamprey fish’s brain to a robotic system. It was able to move its ‘vehicle’ towards lights. news.bbc.co.uk/1/hi/sci/tech/1

    But for obvious reasons, fungi are another thing entirely.

    #robotics #Neuroscience #Biohybrid #neurorobotics #lamprey #technology #science #cybernetics

  14. Neuro-robotic experiments are fascinating. I remember the excitement when this team (almost 25 years ago) connected a lamprey fish’s brain to a robotic system. It was able to move its ‘vehicle’ towards lights. news.bbc.co.uk/1/hi/sci/tech/1

    But for obvious reasons, fungi are another thing entirely.

    #robotics #Neuroscience #Biohybrid #neurorobotics #lamprey #technology #science #cybernetics

  15. @neilgall oh wow that *is* next level
    "#Biohybrid machine ushers new era of robotics"

  16. @neilgall oh wow that *is* next level
    "#Biohybrid machine ushers new era of robotics"

  17. @neilgall oh wow that *is* next level
    "#Biohybrid machine ushers new era of robotics"

  18. @neilgall oh wow that *is* next level
    "#Biohybrid machine ushers new era of robotics"

  19. #robots #robotics #biohybrid

    "'By growing mycelium into the electronics of a robot, we were able to allow the biohybrid machine to sense and respond to the environment,' says senior researcher Rob Shepherd, a materials scientist at Cornell."

    sciencealert.com/engineers-gav

  20. Revolutionary biohybrid robots are coming. Are we prepared?
    zurl.co/mJsg

  21. "Here, the use of Chlamydomonas Reinhardtii (CR) is explored, a motile green alga, as a micromotor by harnessing its propulsive force with microtraps. The objectives include developing the #microtrap structure, evaluating trapping efficiency, and investigating the movement dynamics of #biohybrid #micromachines driven by CR."

    onlinelibrary.wiley.com/doi/10

  22. "Here, the use of Chlamydomonas Reinhardtii (CR) is explored, a motile green alga, as a micromotor by harnessing its propulsive force with microtraps. The objectives include developing the #microtrap structure, evaluating trapping efficiency, and investigating the movement dynamics of #biohybrid #micromachines driven by CR."

    onlinelibrary.wiley.com/doi/10

  23. "Here, the use of Chlamydomonas Reinhardtii (CR) is explored, a motile green alga, as a micromotor by harnessing its propulsive force with microtraps. The objectives include developing the #microtrap structure, evaluating trapping efficiency, and investigating the movement dynamics of #biohybrid #micromachines driven by CR."

    onlinelibrary.wiley.com/doi/10

  24. "Here, the use of Chlamydomonas Reinhardtii (CR) is explored, a motile green alga, as a micromotor by harnessing its propulsive force with microtraps. The objectives include developing the #microtrap structure, evaluating trapping efficiency, and investigating the movement dynamics of #biohybrid #micromachines driven by CR."

    onlinelibrary.wiley.com/doi/10

  25. #Ultraviolet #laser processing is a promising technique for developing intricate #microstructures, enabling complex alignment of muscle cells, required for building life-like #biohybrid actuators
    #Engineering #Technology #sflorg
    sflorg.com/2024/02/eng02262401