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#corticallabs — Public Fediverse posts

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  1. Les Organoides (iPSC ou cell. primaires), c'est pas nouveau. En labo, on les utilise en technique alternative toxico pour les fonctions hépatiques, rénales ou le dev de nouveaux traitements.
    Comme, par exemple, l'etude montrant le lien entre stress oxydatif (Hypoxie/Hyperoxie) et régulation genétique (1).

    La video de TRY explore un pan spécifique, le premier "Organoide-Computeur" de Cortical Labs, nommé CL1, et ses implications éthiques:
    youtu.be/yGjy8La0kdU

    (1) :
    pmc.ncbi.nlm.nih.gov/articles/PMC12315710/

    Cc:
    @tournesol @denissalem
    #organoidresearch #organoids #organoide #corticallabs

  2. Les Organoides (iPSC ou cell. primaires), c'est pas nouveau. En labo, on les utilise en technique alternative toxico pour les fonctions hépatiques, rénales ou le dev de nouveaux traitements.
    Comme, par exemple, l'etude montrant le lien entre stress oxydatif (Hypoxie/Hyperoxie) et régulation genétique (1).

    La video de TRY explore un pan spécifique, le premier "Organoide-Computeur" de Cortical Labs, nommé CL1, et ses implications éthiques:
    youtu.be/yGjy8La0kdU

    (1) :
    pmc.ncbi.nlm.nih.gov/articles/PMC12315710/

    Cc:
    @tournesol @denissalem
    #organoidresearch #organoids #organoide #corticallabs

  3. Les Organoides (iPSC ou cell. primaires), c'est pas nouveau. En labo, on les utilise en technique alternative toxico pour les fonctions hépatiques, rénales ou le dev de nouveaux traitements.
    Comme, par exemple, l'etude montrant le lien entre stress oxydatif (Hypoxie/Hyperoxie) et régulation genétique (1).

    La video de TRY explore un pan spécifique, le premier "Organoide-Computeur" de Cortical Labs, nommé CL1, et ses implications éthiques:
    youtu.be/yGjy8La0kdU

    (1) :
    pmc.ncbi.nlm.nih.gov/articles/PMC12315710/

    Cc:
    @tournesol @denissalem
    #organoidresearch #organoids #organoide #corticallabs

  4. Les Organoides (iPSC ou cell. primaires), c'est pas nouveau. En labo, on les utilise en technique alternative toxico pour les fonctions hépatiques, rénales ou le dev de nouveaux traitements.
    Comme, par exemple, l'etude montrant le lien entre stress oxydatif (Hypoxie/Hyperoxie) et régulation genétique (1).

    La video de TRY explore un pan spécifique, le premier "Organoide-Computeur" de Cortical Labs, nommé CL1, et ses implications éthiques:
    youtu.be/yGjy8La0kdU

    (1) :
    pmc.ncbi.nlm.nih.gov/articles/PMC12315710/

    Cc:
    @tournesol @denissalem
    #organoidresearch #organoids #organoide #corticallabs

  5. Gizmodo: A Dish of Neurons Playing DOOM Is the Wildest Thing I’ve Seen in Ages. “A couple of years ago, a company called Cortical Labs released a video that showed a simplified version of Pong being played by a culture of human neurons in a Petri dish. The idea that a bunch of neurons in a dish can do anything is impressive enough, but it turns out that things have gotten significantly […]

    https://rbfirehose.com/2026/03/03/gizmodo-a-dish-of-neurons-playing-doom-is-the-wildest-thing-ive-seen-in-ages/
  6. Gizmodo: A Dish of Neurons Playing DOOM Is the Wildest Thing I’ve Seen in Ages. “A couple of years ago, a company called Cortical Labs released a video that showed a simplified version of Pong being played by a culture of human neurons in a Petri dish. The idea that a bunch of neurons in a dish can do anything is impressive enough, but it turns out that things have gotten significantly […]

    https://rbfirehose.com/2026/03/03/gizmodo-a-dish-of-neurons-playing-doom-is-the-wildest-thing-ive-seen-in-ages/
  7. Gizmodo: A Dish of Neurons Playing DOOM Is the Wildest Thing I’ve Seen in Ages. “A couple of years ago, a company called Cortical Labs released a video that showed a simplified version of Pong being played by a culture of human neurons in a Petri dish. The idea that a bunch of neurons in a dish can do anything is impressive enough, but it turns out that things have gotten significantly […]

    https://rbfirehose.com/2026/03/03/gizmodo-a-dish-of-neurons-playing-doom-is-the-wildest-thing-ive-seen-in-ages/
  8. Gizmodo: A Dish of Neurons Playing DOOM Is the Wildest Thing I’ve Seen in Ages. “A couple of years ago, a company called Cortical Labs released a video that showed a simplified version of Pong being played by a culture of human neurons in a Petri dish. The idea that a bunch of neurons in a dish can do anything is impressive enough, but it turns out that things have gotten significantly […]

    https://rbfirehose.com/2026/03/03/gizmodo-a-dish-of-neurons-playing-doom-is-the-wildest-thing-ive-seen-in-ages/
  9. "In a development straight out of science fiction, Australian startup Cortical Labs has released what it calls the world’s first code-deployable biological computer. The CL1, which debuted in March, fuses human brain cells on a silicon chip to process information via sub-millisecond electrical feedback loops.

    Designed as a tool for neuroscience and biotech research, the CL1 offers a new way to study how brain cells process and react to stimuli. Unlike conventional silicon-based systems, the hybrid platform uses live human neurons capable of adapting, learning, and responding to external inputs in real time.

    “On one view, [the CL1] could be regarded as the first commercially available biomimetic computer, the ultimate in neuromorphic computing that uses real neurons,” says theoretical neuroscientist Karl Friston of University College London. “However, the real gift of this technology is not to computer science. Rather, it’s an enabling technology that allows scientists to perform experiments on a little synthetic brain.”"

    spectrum.ieee.org/biological-c

    #Biocomputing #Neuroscience #CorticalLabs #BrainCells #Neurons

  10. "In a development straight out of science fiction, Australian startup Cortical Labs has released what it calls the world’s first code-deployable biological computer. The CL1, which debuted in March, fuses human brain cells on a silicon chip to process information via sub-millisecond electrical feedback loops.

    Designed as a tool for neuroscience and biotech research, the CL1 offers a new way to study how brain cells process and react to stimuli. Unlike conventional silicon-based systems, the hybrid platform uses live human neurons capable of adapting, learning, and responding to external inputs in real time.

    “On one view, [the CL1] could be regarded as the first commercially available biomimetic computer, the ultimate in neuromorphic computing that uses real neurons,” says theoretical neuroscientist Karl Friston of University College London. “However, the real gift of this technology is not to computer science. Rather, it’s an enabling technology that allows scientists to perform experiments on a little synthetic brain.”"

    spectrum.ieee.org/biological-c

    #Biocomputing #Neuroscience #CorticalLabs #BrainCells #Neurons

  11. "In a development straight out of science fiction, Australian startup Cortical Labs has released what it calls the world’s first code-deployable biological computer. The CL1, which debuted in March, fuses human brain cells on a silicon chip to process information via sub-millisecond electrical feedback loops.

    Designed as a tool for neuroscience and biotech research, the CL1 offers a new way to study how brain cells process and react to stimuli. Unlike conventional silicon-based systems, the hybrid platform uses live human neurons capable of adapting, learning, and responding to external inputs in real time.

    “On one view, [the CL1] could be regarded as the first commercially available biomimetic computer, the ultimate in neuromorphic computing that uses real neurons,” says theoretical neuroscientist Karl Friston of University College London. “However, the real gift of this technology is not to computer science. Rather, it’s an enabling technology that allows scientists to perform experiments on a little synthetic brain.”"

    spectrum.ieee.org/biological-c

    #Biocomputing #Neuroscience #CorticalLabs #BrainCells #Neurons

  12. "In a development straight out of science fiction, Australian startup Cortical Labs has released what it calls the world’s first code-deployable biological computer. The CL1, which debuted in March, fuses human brain cells on a silicon chip to process information via sub-millisecond electrical feedback loops.

    Designed as a tool for neuroscience and biotech research, the CL1 offers a new way to study how brain cells process and react to stimuli. Unlike conventional silicon-based systems, the hybrid platform uses live human neurons capable of adapting, learning, and responding to external inputs in real time.

    “On one view, [the CL1] could be regarded as the first commercially available biomimetic computer, the ultimate in neuromorphic computing that uses real neurons,” says theoretical neuroscientist Karl Friston of University College London. “However, the real gift of this technology is not to computer science. Rather, it’s an enabling technology that allows scientists to perform experiments on a little synthetic brain.”"

    spectrum.ieee.org/biological-c

    #Biocomputing #Neuroscience #CorticalLabs #BrainCells #Neurons

  13. "In a development straight out of science fiction, Australian startup Cortical Labs has released what it calls the world’s first code-deployable biological computer. The CL1, which debuted in March, fuses human brain cells on a silicon chip to process information via sub-millisecond electrical feedback loops.

    Designed as a tool for neuroscience and biotech research, the CL1 offers a new way to study how brain cells process and react to stimuli. Unlike conventional silicon-based systems, the hybrid platform uses live human neurons capable of adapting, learning, and responding to external inputs in real time.

    “On one view, [the CL1] could be regarded as the first commercially available biomimetic computer, the ultimate in neuromorphic computing that uses real neurons,” says theoretical neuroscientist Karl Friston of University College London. “However, the real gift of this technology is not to computer science. Rather, it’s an enabling technology that allows scientists to perform experiments on a little synthetic brain.”"

    spectrum.ieee.org/biological-c

    #Biocomputing #Neuroscience #CorticalLabs #BrainCells #Neurons

  14. Das #künstlicheIntelligenz nur eine kurze Episode ist, war klar. Die Zukunft liegt natürlich bei #Kybernetik, wie wir seit "Terminator" wissen. 🤪

    Der erste Computer mit menschlichen #Hirnzellen ist da. Das australische Start-up #CorticalLabs verkauft den #CL1, ein kybernetisches System mit gezüchteten Neuronen. Diese lösen Aufgaben energieeffizienter als digitale #KI und könnten sogar #Tierversuche ersetzen.

    derstandard.at/story/300000026

    #NeuronaleNetzwerke #Biotechnologie #Forschung #Science

  15. Das #künstlicheIntelligenz nur eine kurze Episode ist, war klar. Die Zukunft liegt natürlich bei #Kybernetik, wie wir seit "Terminator" wissen. 🤪

    Der erste Computer mit menschlichen #Hirnzellen ist da. Das australische Start-up #CorticalLabs verkauft den #CL1, ein kybernetisches System mit gezüchteten Neuronen. Diese lösen Aufgaben energieeffizienter als digitale #KI und könnten sogar #Tierversuche ersetzen.

    derstandard.at/story/300000026

    #NeuronaleNetzwerke #Biotechnologie #Forschung #Science

  16. Das #künstlicheIntelligenz nur eine kurze Episode ist, war klar. Die Zukunft liegt natürlich bei #Kybernetik, wie wir seit "Terminator" wissen. 🤪

    Der erste Computer mit menschlichen #Hirnzellen ist da. Das australische Start-up #CorticalLabs verkauft den #CL1, ein kybernetisches System mit gezüchteten Neuronen. Diese lösen Aufgaben energieeffizienter als digitale #KI und könnten sogar #Tierversuche ersetzen.

    derstandard.at/story/300000026

    #NeuronaleNetzwerke #Biotechnologie #Forschung #Science

  17. Das #künstlicheIntelligenz nur eine kurze Episode ist, war klar. Die Zukunft liegt natürlich bei #Kybernetik, wie wir seit "Terminator" wissen. 🤪

    Der erste Computer mit menschlichen #Hirnzellen ist da. Das australische Start-up #CorticalLabs verkauft den #CL1, ein kybernetisches System mit gezüchteten Neuronen. Diese lösen Aufgaben energieeffizienter als digitale #KI und könnten sogar #Tierversuche ersetzen.

    derstandard.at/story/300000026

    #NeuronaleNetzwerke #Biotechnologie #Forschung #Science

  18. Das #künstlicheIntelligenz nur eine kurze Episode ist, war klar. Die Zukunft liegt natürlich bei #Kybernetik, wie wir seit "Terminator" wissen. 🤪

    Der erste Computer mit menschlichen #Hirnzellen ist da. Das australische Start-up #CorticalLabs verkauft den #CL1, ein kybernetisches System mit gezüchteten Neuronen. Diese lösen Aufgaben energieeffizienter als digitale #KI und könnten sogar #Tierversuche ersetzen.

    derstandard.at/story/300000026

    #NeuronaleNetzwerke #Biotechnologie #Forschung #Science

  19. Der CL1 verbindet menschliche Gehirnzellen, die aus Stammzellen gezüchtet wurden, mit einem Chip in einem Bioreaktor, um Rechenaufgaben zu erledigen. 🧠💻

    Zum Artikel: heise.de/-10312601?wt_mc=sm.re

    #CorticalLabs #CL1 #Hirnzellen #Bioreaktor #Computer

  20. Der CL1 verbindet menschliche Gehirnzellen, die aus Stammzellen gezüchtet wurden, mit einem Chip in einem Bioreaktor, um Rechenaufgaben zu erledigen. 🧠💻

    Zum Artikel: heise.de/-10312601?wt_mc=sm.re

    #CorticalLabs #CL1 #Hirnzellen #Bioreaktor #Computer

  21. Der CL1 verbindet menschliche Gehirnzellen, die aus Stammzellen gezüchtet wurden, mit einem Chip in einem Bioreaktor, um Rechenaufgaben zu erledigen. 🧠💻

    Zum Artikel: heise.de/-10312601?wt_mc=sm.re

    #CorticalLabs #CL1 #Hirnzellen #Bioreaktor #Computer

  22. Der CL1 verbindet menschliche Gehirnzellen, die aus Stammzellen gezüchtet wurden, mit einem Chip in einem Bioreaktor, um Rechenaufgaben zu erledigen. 🧠💻

    Zum Artikel: heise.de/-10312601?wt_mc=sm.re

    #CorticalLabs #CL1 #Hirnzellen #Bioreaktor #Computer

  23. Der CL1 verbindet menschliche Gehirnzellen, die aus Stammzellen gezüchtet wurden, mit einem Chip in einem Bioreaktor, um Rechenaufgaben zu erledigen. 🧠💻

    Zum Artikel: heise.de/-10312601?wt_mc=sm.re

    #CorticalLabs #CL1 #Hirnzellen #Bioreaktor #Computer

  24. e504 — Can You Digg It?

    e504 with Andy, Michael and Michael – stories and discussion on #vibecoding #AI, #biocomputing, #philosophy, #Digg, #MWC25, #LaserRot and much more.

    https://media.blubrry.com/gamesatwork/op3.dev/e,pg=6e00562f-0386-5985-9c2c-26822923720d/gamesatwork.biz/wp-content/uploads/2025/03/E504.mp3

    Podcast: Play in new window | Download (Duration: 30:24 — 42.4MB) | Embed

    Subscribe: Apple Podcasts | Spotify | Amazon Music | Android | Podcast Index | Youtube Music | RSS | More

    gamesatwork.biz/2025/03/10/e50

  25. e504 — Can You Digg It?

    e504 with Andy, Michael and Michael – stories and discussion on #vibecoding #AI, #biocomputing, #philosophy, #Digg, #MWC25, #LaserRot and much more.

    https://media.blubrry.com/gamesatwork/op3.dev/e,pg=6e00562f-0386-5985-9c2c-26822923720d/gamesatwork.biz/wp-content/uploads/2025/03/E504.mp3

    Podcast: Play in new window | Download (Duration: 30:24 — 42.4MB) | Embed

    Subscribe: Apple Podcasts | Spotify | Amazon Music | Android | Podcast Index | Youtube Music | RSS | More

    gamesatwork.biz/2025/03/10/e50

  26. e504 — Can You Digg It?

    e504 with Andy, Michael and Michael – stories and discussion on #vibecoding #AI, #biocomputing, #philosophy, #Digg, #MWC25, #LaserRot and much more.

    https://media.blubrry.com/gamesatwork/op3.dev/e,pg=6e00562f-0386-5985-9c2c-26822923720d/gamesatwork.biz/wp-content/uploads/2025/03/E504.mp3

    Podcast: Play in new window | Download (Duration: 30:24 — 42.4MB) | Embed

    Subscribe: Apple Podcasts | Spotify | Amazon Music | Android | Podcast Index | Youtube Music | RSS | More

    gamesatwork.biz/2025/03/10/e50

  27. Story from Oct. 2022 -

    800k neurons in cell culture learned to play Pong in around 5 minutes

    "If ‘DishBrain’ can learn to play Pong – what does this mean for science?
    Brains-on-a-chip have existed for years but this is the first-time cells have been stimulated and measured for a response."

    cosmosmagazine.com/technology/

    #DishBrain #CorticalLabs #science #Pong

  28. Story from Oct. 2022 -

    800k neurons in cell culture learned to play Pong in around 5 minutes

    "If ‘DishBrain’ can learn to play Pong – what does this mean for science?
    Brains-on-a-chip have existed for years but this is the first-time cells have been stimulated and measured for a response."

    cosmosmagazine.com/technology/

    #DishBrain #CorticalLabs #science #Pong

  29. Story from Oct. 2022 -

    800k neurons in cell culture learned to play Pong in around 5 minutes

    "If ‘DishBrain’ can learn to play Pong – what does this mean for science?
    Brains-on-a-chip have existed for years but this is the first-time cells have been stimulated and measured for a response."

    cosmosmagazine.com/technology/

    #DishBrain #CorticalLabs #science #Pong