THE FLY BRAIN ESCAPED THE COMPUTER. I PUT IT INSIDE A PHYSICAL ROBOT.
Scientists released a reconstructed map containing 166,700 neurons from a fruit fly.
I connected it to a Strandbeest.
The panel in the top-right shows the simulated brain running. Its neural activity is translated into motor commands that move the mechanical legs below.
The catch: this is a computational model built from biological wiring. I engineered the interface connecting its outputs to the robot.
First, the fly brain entered DOOM.
Then it played Chrome Dino.
Now it has a physical body.
166,700 neurons.
25 million connections.
One nervous system walking through the real world.
@byfayez احترم جدا يوسف ولكن اعتقد انه يتكلم اكثر مما يشتغل ( الى ما يطلق برنامجه وممكن اطلع خطا 😔 )
اما الي يسوونه الناس ظنتي يحرقون فلوس على التجربة يجرب اي شيء يخطر على باله
🎓 FROM DESIGN TO DEVICE
SEMC Semiconductor Training Program
Ready to explore how a semiconductor goes from design to a real device?
SEMC is offering a FREE 5-day hybrid training program, combining online learning with an on-site experience.
The training topics are:
🔹 Design — Where the device begins
🔹 Fabrication — Bringing the design to life through fabrication
🔹 Packaging — Turning the fabricated device into a usable product
🔹 Measurement — Testing and evaluating device performance
💻🏭 Format: Online + On-Site
💰 Cost: FREE
👥 Seats: Limited
Who can apply:
Students, graduates and professionals in engineering, science, and related fields
📅 Registration closes: 17 September
To register:
1️⃣ Follow SEMC on X
2️⃣ Repost this post
3️⃣ Reply to the post with your major.
📩 If your registration is approved, we will contact you directly.
💡 Know someone interested in semiconductors? Tag them below!
⚠️ Registration is subject to confirmation due to limited seats.
5 days. 4 stages. One journey from design to device.
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