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#nanobots — Public Fediverse posts

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

  1. Eva Ramón Gallegos Achieves Breakthrough in HPV Eradication Using Photodynamic Therapy — Advocacy for Endometriosis Excision Surgery endoexcisionforall.org/news/ev || Now combine that with #nanobots and call the laser unit a #tricorder

  2. Eva Ramón Gallegos Achieves Breakthrough in HPV Eradication Using Photodynamic Therapy — Advocacy for Endometriosis Excision Surgery endoexcisionforall.org/news/ev || Now combine that with #nanobots and call the laser unit a #tricorder

  3. Eva Ramón Gallegos Achieves Breakthrough in HPV Eradication Using Photodynamic Therapy — Advocacy for Endometriosis Excision Surgery endoexcisionforall.org/news/ev || Now combine that with #nanobots and call the laser unit a #tricorder

  4. Eva Ramón Gallegos Achieves Breakthrough in HPV Eradication Using Photodynamic Therapy — Advocacy for Endometriosis Excision Surgery endoexcisionforall.org/news/ev || Now combine that with #nanobots and call the laser unit a #tricorder

  5. "A team of researchers from the University of Pennsylvania and the University of Michigan has developed a new robot that is smaller than a grain of salt, measuring only 200 x 300 x 50 micrometers. At 0.3 mm on its longest side, that's far below the 1-mm threshold. Yet it can sense its surroundings, make decisions on its own, and swim and move in water."

    wired.com/story/autonomous-aqu

    #Technology #Engineering #Robots #Nanobots

  6. "A team of researchers from the University of Pennsylvania and the University of Michigan has developed a new robot that is smaller than a grain of salt, measuring only 200 x 300 x 50 micrometers. At 0.3 mm on its longest side, that's far below the 1-mm threshold. Yet it can sense its surroundings, make decisions on its own, and swim and move in water."

    wired.com/story/autonomous-aqu

    #Technology #Engineering #Robots #Nanobots

  7. "A team of researchers from the University of Pennsylvania and the University of Michigan has developed a new robot that is smaller than a grain of salt, measuring only 200 x 300 x 50 micrometers. At 0.3 mm on its longest side, that's far below the 1-mm threshold. Yet it can sense its surroundings, make decisions on its own, and swim and move in water."

    wired.com/story/autonomous-aqu

    #Technology #Engineering #Robots #Nanobots

  8. "A team of researchers from the University of Pennsylvania and the University of Michigan has developed a new robot that is smaller than a grain of salt, measuring only 200 x 300 x 50 micrometers. At 0.3 mm on its longest side, that's far below the 1-mm threshold. Yet it can sense its surroundings, make decisions on its own, and swim and move in water."

    wired.com/story/autonomous-aqu

    #Technology #Engineering #Robots #Nanobots

  9. "A team of researchers from the University of Pennsylvania and the University of Michigan has developed a new robot that is smaller than a grain of salt, measuring only 200 x 300 x 50 micrometers. At 0.3 mm on its longest side, that's far below the 1-mm threshold. Yet it can sense its surroundings, make decisions on its own, and swim and move in water."

    wired.com/story/autonomous-aqu

    #Technology #Engineering #Robots #Nanobots

  10. Magnetic NanoBots Relieve Nagging Tooth Sensitivity. Nanobots deliver calcium silicate plugs to protect and close microscopic dental channels that all fluid and food to reach sensitive nerves. #nanobots #dental #pain #dentinaltubules #bioceramic
    instagram.com/p/DNd5NZfu7xU/

  11. "After injecting several hundred billion [300 nm #nanobots] into a rabbit's artery, the scientists used magnets & medical imaging technology to cause the bots to cluster together inside an aneurysm. ... The bots were then heated to their melting point. The process released a naturally occurring blood-clotting protein to prevent or stop the aneurysm bleeding into the brain" theregister.com/2024/09/07/nan

  12. "After injecting several hundred billion [300 nm #nanobots] into a rabbit's artery, the scientists used magnets & medical imaging technology to cause the bots to cluster together inside an aneurysm. ... The bots were then heated to their melting point. The process released a naturally occurring blood-clotting protein to prevent or stop the aneurysm bleeding into the brain" theregister.com/2024/09/07/nan

  13. "After injecting several hundred billion [300 nm #nanobots] into a rabbit's artery, the scientists used magnets & medical imaging technology to cause the bots to cluster together inside an aneurysm. ... The bots were then heated to their melting point. The process released a naturally occurring blood-clotting protein to prevent or stop the aneurysm bleeding into the brain" theregister.com/2024/09/07/nan