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Hologenix and Decathlon Debut a New Capsule Using CELLIANT® Tech

Textile company Hologenix is teaming up with Decathlon to introduce an innovative activewear collection that harnesses the transformative capabilities of infrared technology to optimize athletic performance and facilitate post-workout recovery. Notably, this collaboration marks a significant milestone as the first-ever integration of Hologenix’s CELLIANT® technology with the cutting-edge REPREVE® Recycled Polyester innovation.

At the core of this collaboration lies the groundbreaking CELLIANT technology, revered for its ability to convert the body's natural heat into beneficial infrared energy. This process effectively enhances local blood circulation and elevates cellular oxygen levels, which is essential for maximizing athletic potential and accelerating recovery.

The new Hologenix and Decathlon collection will be made available through the brand's websites in the coming weeks.
Trend Themes
1. Infrared Energy-infused Activewear - Innovative activewear collections incorporating infrared technology to optimize athletic performance and expedite post-workout recovery.
2. CELLIANT Technology Integration - First-ever integration of Hologenix's CELLIANT technology with REPREVE Recycled Polyester innovation for enhanced athletic benefits.
3. Enhanced Blood Circulation Apparel - Apparel designed to elevate local blood circulation and cellular oxygen levels, key elements for boosting athletic capabilities and recovery.
Industry Implications
1. Sportswear Manufacturing - Opportunities for sportswear manufacturers to explore incorporating infrared technology and innovative fabrics for performance-enhancing activewear.
2. Textile Technology - Innovative applications in textile technology for integrating CELLIANT technology and recycled polyester materials to create cutting-edge performance fabrics.
3. Athletic Recovery Products - Emerging market for products focused on optimizing post-workout recovery by enhancing blood circulation and cellular oxygen levels through wearable technology.

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