There’s a fruit fly walking around right now that was never born.
Researchers recently reconstructed the entire wiring diagram of a fruit fly’s brain, its connectome, and recreated it inside a computer, then connected that digital brain to a simulated body.
The result was remarkable. The virtual fly began to walk, groom, and feed, even though nobody trained it to behave like a fly and no datasets or reinforcement learning were involved.
Instead of teaching a model to imitate behavior, scientists rebuilt the brain neuron by neuron, allowing the behavior to emerge naturally from the biological structure itself.
This is very different from how most modern AI systems work, which typically learn patterns from data rather than reproducing the underlying architecture of a brain.
A fruit fly brain contains about 125,000 neurons, while the human brain contains tens of billions.
Which raises a fascinating question for the future of AI and neuroscience:
What happens when we can simulate an entire human mind?
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Source: @eonsys on X
fruit fly brain simulation, connectome brain mapping, whole brain emulation, digital brain simulation, computational neuroscience AI, neuron network modeling, brain emulation research, digital organism simulation, neuroscience technology, future of artificial intelligence
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🪰 Researchers at Eon Systems have created a virtual fruit fly controlled by a simulated brain modeled on the actual Drosophila connectome, a map of roughly 140,000 neurons and 50 million synaptic connections.
The digital fly can taste, navigate toward food, groom itself when coated in virtual dust, and respond to visual stimuli.
Its brain model drives a physically accurate 3D body simulated with real joint mechanics and contact forces.
The team emphasizes this is an integration of existing published research rather than entirely new science, and significant limitations remain: the neuron models are simplified, internal states like hunger are largely absent, and only a handful of behaviors have been implemented.
Still, researchers call it a promising platform for studying how brain structure gives rise to behavior.
Relevant article/studies for more info:
“The First Multi-Behavior Brain Upload “ published by Dr. Alex Wissner-Gross (alexwg on X)
DOI: 10.1038/s41592-024-02497-y
DOI: 10.1038/s41586-025-09029-4
DOI: 10.1038/s41586-024-07763-9
This tiny new brain is a huge deal.
Scientists mapped an entire fruit fly brain. It’s the size of a poppy seed. Our human brains are about the size of a cantaloupe. This map is different from other brain images you’ve seen because it shows all of the almost 140,000 neurons linked by over 50 million synapses.
It took slicing the brain into 7,000 layers, imaging it 21 million times, and having hundreds of volunteers help piece it together to create. If we tried to do this to a human brain, it would take billions of dollars and hundreds of years!
That’s not feasible right now, but this fly brain can tell us a lot already...
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#brain #animation #science #stem #scitech
Researchers at Princeton (with the help of AI and a bunch of volunteers) painstakingly mapped every single neuron in the brain of a female fruit fly. It has already led to a bunch papers, published this week in Nature.
AI Mapped an entire fruit fly brain:
Researchers at Princeton just mapped an entire fruit fly brain at the synaptic level using AI. Let's break down why this is such a big deal.
This story is almost too crazy to be real and it's making me question everything. And mysteriously... it brings The Matrix back to mind. An ENTIRELY mapped fruit fly's brain uploaded into a simulated world, it turns out, behaves EXACTLY like a real fruit fly, and that's more disturbing than I expected. What if they upload me next...
#ai #future #tech #virtual
This fruit fly brain map could have wild implications for humanity and all of nature. What do you think?
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#science #brains #freewill #brainmap #neuroscience #fruitflybrain #kylehill #video #sciencenews
A fruit fly is walking around right now that was never actually born.
Startup Eon Systems recently showed a digital fruit fly powered by a simulated brain. The system is built using the fruit fly’s connectome a detailed wiring map of its brain containing around 125,000 neurons and roughly 50 million synaptic connections.
Researchers used this connectome data, along with computational neuron models and predicted neurotransmitter types, to construct a full brain simulation.
That simulated brain was then connected to a physics-based virtual body using the NeuroMechFly system running inside the MuJoCo physics engine. As the digital fly receives sensory input from its environment, neural signals move through the network and produce motor commands.
The result is a virtual fly capable of walking, grooming, feeding, and coordinating movement.
Unlike most modern AI systems, this behavior was not trained on datasets or reinforcement learning. Instead, scientists attempted to recreate the fly’s neural circuitry so that behavior naturally emerges from the network itself.
This demonstration links perception, neural activity, and movement in a connectome-based brain simulation.
For perspective, the human brain contains around 86 billion neurons about a million times more than a fruit fly making full human brain emulation an enormous scientific challenge.
Media 🎥: @eonsys
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🤯 We might have just witnessed the first real mind upload.
There's a fruit fly walking around right now that was never born.
Eonsys just released a video where they took a real fly's connectome — the wiring diagram of its brain — and simulated it. Dropped it into a virtual body. It started walking. Grooming. Feeding. Doing what flies do.
Nobody taught it to walk. No training data, no gradient descent toward fly-like behavior. This is the opposite of how AI works. They rebuilt the mind from the inside, neuron by neuron, and behavior just... emerged. It's the first time a biological organism has been recreated not by modeling what it does, but by modeling what it is.
A human brain is 6 OOM more neurons. That's a scaling problem, something we've gotten very good at solving. So what happens when we have a working copy of the human mind?
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We might have just witnessed the first real mind upload😱
Scientists scanned a fruit fly brain neuron by neuron, recreated it digitally and placed it inside a simulated body. The fly walked!!!
What if it soon can be done with humans??
#mobileappdaily #fruitfly #neuron
A tiny fly brain… copied into a machine. No training. No instructions. Yet it started behaving like a real fly. Are scientists creating digital life now?
#artificialintelligence #futuretech #digitallife #sciencebreakthroughs #airevolution
If a brain can be copied into a computer… is that life?