GT 2000 11 TR Womens
GT 2000 11 TR Womens
GT 2000 11 TR Womens
GT 2000 11 TR Womens
GT 2000 11 TR Womens
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  • Load image into Gallery viewer, GT 2000 11 TR Womens
  • Load image into Gallery viewer, GT 2000 11 TR Womens
  • Load image into Gallery viewer, GT 2000 11 TR Womens

GT 2000 11 TR Womens

Vendor
Asics
Regular price
$260.00
Sale price
$260.00
Regular price
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Unit price
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The GT-2000™ 11 (Wide) shoe from the NATURE BATHING collection is inspired by the idea of walking through the forest. It's rendered with various colors that reflect the calming hues found in nature.

Key adjustments in the midsole include our FF BLAST™ cushioning. This soft material helps promote softer landings and a responsive rebound.

LITETRUSS™ technology is positioned on the inside of the midsole to improve stability. It helps prevent your foot from rolling too far inward, setting you up for a smoother stride.

Lastly, the outsole's hybrid tread pattern make this shoe functional for running on both road and trail surfaces.

Engineered Mesh

A technical mesh material that stretches in multiple directions, creating a glove, snug like fit that provides a unique balance of comfort and fit.

Flytefoam Blast Midsole

Lightweight, midsole foam with energetic and highly responsive cushioning and bounce for an efficient ride.

Gel - Forefoot Twist

Shock absorbing material placed in forefoot of shoe. Shape of units designed for special function under the ball of the foot.

Gel - Visible Rearfoot

Reduces impact during heel strike and allows for a smooth transititon. Shape of units designed for special function under the outside (laterial) side of the foot.

Internal Heel Counter

The internal plastic structure of the shoe which wraps around the heel of your foot. It holds the heel in position during the movements of running improving support.

3D Space Construction

This technology is implemented through a series of strategically planted pillars within the midsole, allowing runners to experience more compression in a specific area without reducing durability or stability. These pillar formations are tuned differently in the men's and women's models to address each gender's biomechanical data