
Your Professional Orthosis Supplier
An Ankle Foot Orthosis (AFO) is a medical device designed to provide support and stability to the ankle and foot. It is typically used to assist individuals with various conditions that affect their ability to walk or maintain proper alignment of the lower leg and foot.
An AFO is primarily used to improve the function of the ankle and foot, aiding in walking, balance, and preventing further deformities or complications. It can be prescribed for a range of conditions, such as drop foot, cerebral palsy, multiple sclerosis, and post-stroke rehabilitation.
Diabetic Insoles Supply Comfort & Flexible To Diabetes
- Design: AFOs come in various designs, including rigid, semi-rigid, and flexible types. The design is selected based on the patient’s specific needs and the condition being treated. Rigid AFOs provide the most support, while flexible AFOs offer more natural movement.
- Customization: AFOs can be custom-made to fit an individual’s foot and ankle precisely. This ensures maximum comfort and effectiveness, as each person’s needs and anatomical characteristics can differ significantly.
- Support and Alignment: AFOs are designed to support the ankle and foot, helping to maintain proper alignment. This can improve gait patterns, reduce the risk of tripping or falling, and alleviate discomfort.
Plastazote Foam For Diabetic Insoles
It is tough and flexible, defined by the regular shapes, sides, and walls of the cells made from polyethylene. If Plastazote foam is squashed and compressed, each nitrogen-filled cell acts like a balloon, and the foam bounces back to its original shape.
- Can be easily shaped, cut, and bonded to other materials.
- Non-toxic, odorless, will not absorb water, and is buoyant.
- Can be washed, disinfected, and wiped clean. Very good thermal insulator.
- Plastazote is 100% physical foam
- Weatherproof and has good ultraviolet stability.
- Durable, tough, and flexible and recovers repeatedly from impacts.
What Problems Do Flat Feet Cause?
In the supercritical nitrogen foaming process, no chemical foaming agent is used, so the products produced have extremely high cleanness characteristics, no pungent odor, and no organic substances are released. The material itself is non-toxic and does not harm human skin.
Based on the different substrates used, Azote series products can be divided into Plastazote, Evazote, Supazote series, but no matter which series, due to its special supercritical nitrogen foaming process, the products produced have stable pores and uniformity. Characteristics.
Other Arch Support Insoles
Can Change The Plastazote Upper
- Technical Inspection
How do ordinary diabetic patients choose the right diabetic shoes insoles?
Answer: You can make references when choosing shoes from the following aspects.
★ Length (Length): When wearing shoes to stand and bear the weight, you need to confirm that diabetic insoles have sufficient length. The internal length of the shoes and insoles should be 1-2cm longer than the length of the foot measured from the heel to the longest toe.
★ Depth: It should be adapted to the toes to move freely without causing pressure on the inside, outside or back. ★ Width: The width should be equal to the width of all parts of the foot. If the upper is just fastened, the width is good. The relationship between the forefoot and the back foot is important because accommodating a wide forefoot may cause the heel to be too wide.
★ Height: The height may be lower than the ankle, flush with the ankle or higher than the ankle. Premium shoes provide firmer, more stable and reduced joint movement. High-top shoes also help decompress the forefoot.
★ Insole: The main function of the insole is pressure redistribution. This is achieved by the principle of increasing the contact area between the foot and the insole and adding corrective elements in the insole. Should use shock-absorbing, soft but flexible and non-slip materials, and plastazote foam.
★ Outsole: Rubber, plastic and leather can all be used to make shoe outsoles, but rubber outsoles are considered the best.
★ Heel enclosure: It is recommended to use a foot-fitting and closed heel, because footwear with an open back or too wide heel enclosure may cause heel injuries, and it is usually necessary for the wearer to hold the toes to keep the toes Open state.
★ Heel lift: The heel height (or heel difference or spacing) should generally be 1.5-2 cm, and should not exceed 3 cm.
★ Closure: Properly tighten the shoelace or Velcro to keep the foot from sliding forward. The shoelace tightening should ensure long-term fastening and personal adjustment.
★ Uppers: Uppers should be made of leather or synthetic materials (similar to sports shoes), smooth inner lining avoids materials that harden over time, limited seams and best not in the upper area Seams and uppers should be breathable and durable, and can improve foot deformities without creating pressure areas.
★ Toe box: The part of the shoe that covers and protects the toe should be soft (unless special requirements (such as construction professionals) require otherwise) and should be adapted to the shape of the toe to avoid any friction on the toe. (The above refer to Australia’s 2018 edition of “Guidelines for Wearing Shoes for Diabetic Patients”)



















