MOEA Takes Home 7 Awards at R&D100
18 Years, 100+ Awards:
MOEA notes that innovative R&D is a key catalyst for propelling the consistent development of
In line with these sustained efforts, the biomedical and healthcare field features two standout awardees. ITRI's Bio-Inspired Ligament Scaffold (BILS) is a bioengineered ligament designed to accelerate healing in anterior cruciate ligament (ACL) reconstruction and other orthopedic repairs. Its porous bionic textile structure and biocomposite materials enhance soft-hard tissue integration and bone regeneration. Compared to conventional PET-based ligaments, it delivers three times higher breaking strength, superior bone integration, and 30% faster functional recovery, offering an innovative and durable solution for sports medicine and the aging population. This innovation was developed in cooperation with Shinkong Synthetic Fibers, OssAware Biotech, and the Taiwan Textile Research Institute. The "AI-Guided Interactive Speech-Language Therapy System" developed by MIRDC leverages generative AI to understand children's semantics in real-time, dynamically generating imitative and expansive feedback to guide them toward correct expression. This system enables intensive home-based training, pioneering a new future for AI-assisted speech-language therapy.
In the AI field, ITRI's AI-WaJe™ system represents a breakthrough in sustainable tire recycling, addressing the global challenge of end-of-life tires through an AI-optimized, non-thermal water jet process that transforms waste tires into high-activity rubber powder. Unlike conventional mechanical or pyrolytic methods, AI-WaJe™ leverages molecular-level thermal to kinetic energy conversion to selectively break down excessively cross-linked rubber molecules, thereby restoring their reactivity and enabling reuse in high-performance applications. It can process a large truck tire in just six minutes and produces rubber powder with a verified relative activity of up to 79%, enabling direct reintegration into new tire formulations and other premium polymer products. This technology has also driven the creation of the spinoff Taiwan Polymer Material Company, accelerating industrial adoption of green tire recycling.
In the green technology sector, TTRI has developed the "Looping Nylon Technique: no virgin material from recycled fiber to recycle membranes." Utilizing patented ultrasonic cleaning technology, the process achieves 98% cleanliness while reducing water consumption by 90%. The entire manufacturing process is solvent-free and has reduced carbon emissions by over 70%, enabling the upcycling of discarded fishing nets into high-value medical materials. The membrane can be used in smart medical mattresses, lifeboats, and outdoor functional products, opening up new opportunities for green manufacturing in
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SOURCE Industrial Technology Research Institute (ITRI)
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