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This New Tech Could Change How We Heal Ligaments Forever
What if ligament repair didn’t mean replacement—but regeneration? Developed by Industrial Technology Research Institute, LigamiX™ is a bioengineered ligament designed to help the body heal itself. With a porous, bionic structure and advanced biocomposite materials, it promotes tissue integration, reduces inflammation, and offers a new path forward for orthopedic recovery.
Mar 30


This Technology Might Replace Every Screen You Use Today
What if the world around you became the interface? Developed by Industrial Technology Research Institute and deployed through Darwin Display Solutions, NeoVision AR turns transparent displays into intelligent, interactive layers powered by AI. From airports to smart buildings, it’s redefining how people navigate, explore, and interact—without ever touching a screen.
Mar 30


This AI System Knows When Machines Will Break — Before They Do
What if machines could tell you they’re about to fail—days or even weeks in advance? Developed by Industrial Technology Research Institute, the Prognosis Monitoring System (PMS) is an AI-powered predictive maintenance solution already deployed across semiconductor fabs and critical infrastructure. With real-time diagnostics and over 90% accuracy in predicting remaining useful life, it’s helping companies prevent costly downtime and save millions.
Mar 30


The Future of Infrastructure Isn’t New Materials. It’s Regenerated Ones
We’ve been throwing away our roads—and paying for it twice. A new breakthrough from Industrial Technology Research Institute and Lianyue Aggregates Co., Ltd. uses a biological process to regenerate aged asphalt into high-performance pavement, turning waste into a scalable, low-carbon infrastructure solution.
Mar 29


Cooling, Not Compute, Is Becoming the Hardest Problem in AI
As AI systems scale to unprecedented power levels, the real constraint isn’t compute—it’s heat. A new breakthrough from Industrial Technology Research Institute reveals how next-generation cooling could redefine the future of high-performance computing.
Mar 27
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