







Trail running shoe - Women -
The Bushido II Woman from La Sportiva is a technical women's trail running shoe, perfect for competition, designed for skyrunning and fast stretches.
The Bushido II Woman is characterised by its ultra lightweight design, its grip and its aggressiveness. This trail shoe has been designed to guarantee perfect stability on all types of off-road terrain thanks to its STB Control construction, a new concept in the world of mountain running shoes.
The upper has an internal construction meaning it's like putting on a sock without causing excessive pressure. The TPU outer shell wraps the insole to increase stability while maintaining the weight necessary to give the shoe the proper structure.
The Bushido II Woman offers maximum support, a good hold of the midfoot and freedom of movement at the toes.


Upper: Breathable Airmesh + thermoplastic film reinforcements, TPU HF medial skeleton applied to Ripstop panels.
Lining: Anti-slip breathable mesh
Insole: 4mm Ortholite Ergonomic
Midsole: Compression EVA with STB Control
insert
Outsole: FriXion® Red with Impact Brake System
Drop: 6mm
Heel height: 22mm
Toe height: 16mm
Weight per pair: 500g
Strong points:
- 100% recycled laces
- Minimal seams
- Slip-on inner construction wraps around the foot like a sock
- EVA Cushion Platform insert for excellent cushioning
- Dual mesh sole for use on all surfaces
Technology:
| Friction® Red | The soles of the FriXion® range are designed to be durable and adaptable to their function and the terrain they encounter. The Red version offers a sole that combines excellent grip with wear resistance and impact absorption |
| Ortholite® Ergonomic | Insole developed by La sportiva in collaboration with Ortholite to ensure maximum comfort. |
|
Impact Brake System |
Innovative system in the sole which absorbs the negative impact of the ground, boosting traction when climbing and improving grip when descending. The unique positioning of the crampons allows the maximum number of studs to be in contact with the ground for optimum impact absorption. |