-40%

Vive Offloading Post-Op Shoe Forefront Wedge Boot for Broken Toe Injury LARGE

$ 10.48

Availability: 100 in stock
  • Color: Black
  • UPC: Does not apply
  • Item must be returned within: 30 Days
  • Return shipping will be paid by: Buyer
  • Brand: VIVE
  • EAN: Does not apply
  • Size: Large
  • Model: Vive Offloading
  • Body Area: Foot
  • Restocking Fee: No
  • Type: Boot
  • Refund will be given as: Money Back
  • Department: Adult
  • All returns accepted: Returns Accepted
  • MPN: RHB2012BLKS
  • Condition: New

    Description

    Vive Offloading Post-Op Shoe - Forefront Wedge Boot for Broken Toe Injury - Non Weight Bearing Medical Recovery for Foot Surgery, Hammer Toes, Bunion, Feet Pain - Wide Walking Orthopedic (Large)
    Brand
    Vive
    Size
    Large
    Material
    Polyester
    Unit Count
    1.00 Count
    Indications
    Post surgery, bunion, hammer toe, foot surgery
    About this item
    REDUCES PAINFUL PRESSURE ON THE TOES: Designed to minimize pressure on the toes and forefoot by shifting the weight to the heel, the Vive offloading post op shoe is ideal for protecting broken toes or diabetic foot ulcers. Keeping bandages dry and dirt-free, the dorsiflexion angled wedge shoe also promotes natural healing following bunionectomy, hammertoe or mallet toe corrective surgery.
    EASILY ACCOMMODATES BANDAGES: Secured with two wide fastener straps, the offloading post op shoe is easily adjustable and includes two extender tabs to comfortably accommodate bandages, dressings and swelling. The post op shoe features a neutral base for use on the left or right foot.
    DESIGNED TO PROTECT THE TOES: The wedge healing shoe features a wide, square toe box to act as a bumper, providing greater protection for sore, injured toes. Cushioning the toes and forefoot, the post op shoe is padded with dense foam for greater comfort.
    LIGHTWEIGHT NONSKID BASE: Exceptionally lightweight, the offloading surgical walking boot base is made with a durable rubber. The rigid base is deeply textured to provide greater traction and stability on any surface.