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Latest Content - Popular Mechanics

I Swapped My Skateboard for an Electric Scooter, and I'm Never Looking Back Tight Schedule? These Battery Packs Keep Your Phone, Tablet, and Laptop Charged All Day You Don't Need to Overspend to Get an Effective Trail Camera. These Smart, Stealthy Picks Will Get The Job Done. I Found Toys at the Beach and Change at the Park, Testing These Expert-Approved Metal Detectors Early Prime Day Apple Deals Are Now Live on Amazon—Here’s What Shoppers Should Add to Cart ASAP Here's How Yeti's Newest Camp Chair Stacks Up Against the Best We've Tested Skip the Ice With One of These Editor-Recommended Portable Refrigerators Yes, Dyson Did Well In My Vacuum Testing. But It’s Not the One I Recommend for Most People. Roborock Reigns Supreme for Robot Vacuums—But These Other Editor-Tested Models Are Worth a Look The 8 Best Ductless Air Conditioners for Efficient Home Cooling Our Results for Best Dishwashers Are In. Here’s Why This Bosch Model is the One to Buy. The Coolest Tech Gifts of the Year Are Here. These Gadgets Will Blow Gearheads Away. Have a Handyman in Your Life? Any Gifts On This List Will Bring Them a Smile. The Best Electronic Deadbolts for Securing Your Home, Even When You Forget the Keys Tired of Pool Cleaning Eating Up Your Weekend? These Robots Can Do It For You There’s a New Best Bang-for-Your-Buck Flashlight—and It’s a Collab With Jeep Our Favorite Ceramic and Radiant Space Heaters Warm You Fast. But Which Style Is Actually Best? The Best Gaming Desktops For Every Spec and Budget The TCL QM8L SQD Mini-LED TV Brings More Color and Brightness to Last Year’s Top TV The 8 Best Pocket Knives for Everyday Carry and More This $30 Tarp Solves More Camping Problems Than You Think The World Is Running Out of People—and the Next 40 Years Could Determine the Fate of Humanity Thieves Stole a Legendary Egyptian Artifact. But They Missed the Terrifying 4,000-Year-Old Fine Print Inside. The 9 Best Carpet Cleaners to Lift Set-In Stains and Eliminate Odors They Froze a Brain to −196°C. Then Brought It ‘Back to Life’ in a Groundbreaking New Study. Russia Is Perfecting This Formidable Weapon Fast—Making Iran’s Drones ‘Significantly Deadlier’ One Piece x Lego Is Official—New Sets Are Available for Preorder Now Tick Season Is Getting Worse. These Prevention Tips And Products Can Help Counterfeit SSDs Are Getting Harder to Spot: Here’s How to Make Sure You Aren’t Getting a Fake Trying to Pick a Jackery Power Station? Start With These Models
Scientists Just Created an Artificial Brain Cell That Can...
Darren Orf · 2026-04-28 · via Latest Content - Popular Mechanics

Here’s what you’ll learn when you read this story:

  • Some scientists are wondering if we could mimic the energy-efficient processes of the human brain to improve AI systems.
  • A new study successfully used an aerosol jet printer to create artificial neurons with a partially decomposed polymer substrate.
  • When interacting with a mouse’s cerebellum, the artificial neuron triggered activity in the mouse brain tissue.

For all the talk of things that AI can do better than humans, there remains one especially important skill that even the most advanced machine learning systems can’t match: the raw computing efficiency of human gray matter. Our brains are essentially immensely powerful computers that somehow run on roughly 20 watts of power. AI data centers, on the other hand, churn through millions of watts (and lots and lots of water), much to the detriment of the environment and your electric bill.

Of course, scientists have long known about this massive energy discrepancy between human biology and artificial computing, and they’ve sought ways to merge the two together for decades. Now, in an era where everything seems to be AI, creating ways for these systems to be more efficient is becoming critical, especially if we want to conserve energy and other resources. To that end, a new study published in the journal Nature Nanotechnology investigates a novel way to create artificial neurons that can actually “talk” with real, living brain cells. The hope is to provide a flexible platform (similar to neurons) that has energy advantages over powerful-but-rigid silicon devices.

“The way you make AI smarter is by training it on more and more data. This data-intensive training leads to a massive power-consumption problem,” Mark Hersam, the senior author of the study from Northwestern University, said in a press statement. “Because the brain is five orders of magnitude more energy efficient than a digital computer, it makes sense to look to the brain for inspiration for next-generation computing.”

Creating an artificial neuron is a great place to start. After all, the average human brain contains around 86 billion of them. Specifically, our brains have more neurons in the cerebral cortex—which is responsible for consciousness, thought, memory, emotion, and language—than most animals. While silicon devices (complete with billions of transistors) are powerful, they’re not flexible like human neurons, which are capable of reshaping or even dropping certain connections over time. This is why humans can learn and adapt using very little energy.

To create these artificial neurons, Hersam and his team relied on aerosol jet printing—a technique commonly employed to make electronic components like resistors and capacitors—and used electronic inks as an electrical conductor and semiconductor. In this case, the inks were formulated from flakes of molybdenum disulfide (which acts a semiconductor for the neuron) and graphene. In the past, polymers have been a bit of problem, as they tend to interfere with electrical current. To combat this, Hersam and his team developed an ingenious method for making the substrate more brain-like.

“Instead of fully removing the polymer, we partially decompose it,” Hersam explained. “Then, when we pass current through the device, we drive further decomposition of the polymer. This decomposition occurs in a spatially inhomogeneous manner, leading to formation of a conductive filament, such that all the current is constricted into a narrow region in space.”

This narrow pathway is what allows this electronic inked-up polymer to behave more like a neuron, as it can produce single spikes, continuous firing, or burst patterns rather than a simple, one-off pulse. But the real test came when Hersam’s team interfaced these artificial neurons with a sliver of a mouse’s cerebellum. The team confirmed that artificial voltages matched biological ones, and even triggered activity in the mouse brain tissue.

“Other labs have tried to make artificial neurons with organic materials, and they spiked too slowly. Or they used metal oxides, which are too fast,” Hersam said. “We’ve demonstrated signals that are not only the right timescale but also the right spike shape to interact directly with living neurons.”

More work needs to be done to perfect these artificial neurons—to say nothing of the additional steps needed to create artificial synapses that can connect everything together. But this study shows that creating the building blocks of a future, brain-like AI computer is possible. Now, we need the cerebral mortar and the detailed cognitive blueprints to make this decades-long dream a real, thinking reality.

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Darren lives in Portland, has a cat, and writes/edits about sci-fi and how our world works. You can find his previous stuff at Gizmodo and Paste if you look hard enough.