Buy it now and receive it between 25 Feb and 27 Feb with UPS Express
Conquer the trails with the Mizuno Wave Daichi 9
The Mizuno Wave Daichi 9 is a trail running shoe designed to deliver exceptional performance on any terrain. With superior cushioning, optimized stability, and unbeatable grip, these shoes are the ideal choice for those seeking safety and comfort in their mountain adventures.
- Surface: Trail
- Shoe type: Neutral
- Usage: Training and competition
- Cushioning: Mizuno Enerzy Foam
- Rock protection plate: EVA Plate for impact dispersion
- Sole: Vibram Megagrip for superior traction
- Additional details: Mizuno Wave for stability without sacrificing comfort
Explore without limits with the Mizuno Wave Daichi 9
The Mizuno Wave Daichi 9 has been designed for those who seek a versatile and durable trail shoe. With enhanced cushioning and exceptional grip, these shoes ensure safety and comfort on any type of terrain, whether dry or wet.
Unparalleled cushioning and energy return
Thanks to Mizuno Enerzy Foam technology throughout the midsole, these shoes offer superior impact absorption and energy return that propels each stride, allowing you to run more efficiently on uneven terrain.
Protection and stability with every step
The Mizuno Wave structure, with its dual-density EVA wave design, provides a perfect combination of stability and cushioning. Additionally, the EVA Plate protects against stones and obstacles on the path, dispersing impact and enhancing safety on demanding terrains.
Durable and adaptable upper
The upper design has been optimized to offer a secure and comfortable fit, allowing firm support without compromising flexibility. Breathable materials ensure proper ventilation during the run.
Unmatched traction on any terrain
The sole incorporates Vibram Megagrip compound, a leader in performance, providing superior grip on wet, dry, or uneven surfaces. With 30% more vertical traction and 20% more lateral traction compared to conventional Vibram soles, these shoes guarantee total control in any condition.