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'natural skin tone'

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Silicon Prosthesis

How we make • We custom -make each finger prosthesis and hand prosthesis in our own laboratory ensuring high quality and individual design. The process requires 4 to 5 appointments which involve these steps: • We make molds of the hands using gentle materials. • We modify the patient model and fabricate a diagnostic test socket to evaluate fit. • We carefully sculpt the shape of the prosthesis in wax as we establish a natural contour. • When the sculpture is complete, we fabricate a durable mold which allows us to reproduce the silicone prosthesis. • We have you try on a prototype version of the prosthesis and will make modifications until a secure fit is achieved. • We back -paint the fingernail for a natural appearance. • We meticulously paint every skin detail using your color formulae in your mold. • We check the finger or hand prosthesis for precise fit, and delicately paint color details, such as freckling, onto the surface. • We demonstrate wear and care instructions so that you can use your prosthetic finger or hand with confidence. Silicon Finger manufacturer in Pune, Surat, Kolkata, India.

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Prosthetic

Partial Foot Prosthesis – Types, Design & Benefits A partial foot prosthesis is a custom artificial limb designed to restore mobility, balance, and comfort after a partial foot amputation. Depending on the amputation level, prosthetic options include toe fillers, transmetatarsal prosthesis, Lisfranc prosthesis, Chopart prosthesis, Syme prosthesis, and ankle disarticulation prosthesis. Made with advanced materials like silicone, carbon fiber, EVA, and pelite, these prostheses provide stability, natural gait, and patient comfort. Each partial foot prosthesis is tailored with a custom socket, foot component, and suspension system to ensure proper fit, shock absorption, and energy return. With the guidance of a certified prosthetist, patients receive personalized solutions that support walking, standing, and daily activities. Regular rehabilitation and follow-up care ensure long-term comfort, durability, and functionality.

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Orthosis

Genu varum (bowlegs) and genu valgum (knock-knees) are common knee deformities in children that often resolve naturally as they grow. Genu Varum (Bowlegs): In this condition, the knees are apart while the feet and ankles are together, creating an outward curve. It’s typical in infants and toddlers (1-3 years old) and usually improves by age 3 or 4. If severe or persistent, orthotics or braces may be used to support proper alignment and guide bone growth. Genu Valgum (Knock-Knees): Here, the knees touch but the feet are apart. It is common in children aged 3-5 and typically corrects itself over time. If it persists, orthotics or braces may be used to improve alignment. Orthotics and Braces: Orthotics are shoe inserts that correct foot misalignment, potentially improving knee positioning. Braces or splints may be used in severe cases to guide proper bone growth. Braces: In more severe cases of genu varum or genu valgum, braces or splints might be used to help guide the bones to grow in the correct position. These devices are typically used when there's a concern about the condition not self-correcting over time. Braces may be worn during activities to promote proper alignment during movement.

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ABOVE KNEE PROSTHESIS

A pneumatic knee joint is a type of artificial knee joint that uses compressed air to assist with movement and support. it use in above knee prosthesis . feature :- Dynamic Movement: Pneumatic systems allow for smooth and adaptive movements, mimicking natural knee motion. A typical pneumatic cylinder consists of a cylinder barrel, a piston, seals, and end caps. It may also include ports for air input and output. Compressed air is introduced into the cylinder through an inlet port. This air is typically generated by an air compressor. As the compressed air enters the cylinder, it pushes against the piston. This pressure causes the piston to move in one direction (extend or retract) depending on the configuration of the cylinder. When the piston reaches the end of its stroke, the air can be vented out through an exhaust port, allowing the piston to return to its original position. This can happen either automatically or through a control system. The motion can be controlled using valves that regulate the flow of air into and out of the cylinder, allowing for precise control of the piston’s movement. Lightweight Design: Pneumatic components can be lighter than traditional mechanical parts, improving comfort for the user. Shock Absorption: The system can absorb impact, reducing stress on other joints and enhancing overall mobility.

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Orthosis

A double-action ankle joint ankle-foot orthosis (AFO) is a type of orthotic device designed to support and stabilize the ankle and foot. It features two separate joints, one for dorsiflexion (lifting the foot up) and one for plantarflexion (pointing the foot down). This dual-joint mechanism allows for more natural and controlled movement of the ankle, helping to address various conditions affecting gait and stability. Here are some key points about a double-action AFO: Functionality: The double-action joints provide the ability to control both upward and downward motion of the foot. This helps in managing conditions like foot drop, where the foot cannot be lifted properly, or other gait abnormalities. Customization: These AFOs are often custom-made to fit the individual\'s specific anatomy and needs. Adjustments can be made to fine-tune the range of motion and alignment. Materials: They are typically made from lightweight and durable materials such as thermoplastics or carbon fiber, which offer a balance of strength and flexibility. Indications: They are used for conditions like cerebral palsy, stroke, peripheral neuropathy, or other neurological or musculoskeletal disorders that affect ankle and foot function. Design: The double-action mechanism allows for controlled movement and can help in improving gait, stability, and overall mobility.

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Prosthetic

A prosthetic knee joint is an artificial knee replacement that is used to replace a damaged or diseased knee joint. It is designed to mimic the natural movement and function of a real knee joint, allowing individuals to walk and perform other activities with greater ease and comfort. Prosthetic knee joints come in various types, including total knee replacement (TKR) and partial knee replacement (PKR). In a TKR, the entire knee joint is replaced with an artificial implant, while in a PKR, only the damaged or diseased portion of the knee is replaced. The materials used in prosthetic knee joints are typically made of metal, plastic, or ceramic components, and are designed to be durable and long-lasting. The success of the surgery and the longevity of the implant depends on several factors, such as the patient's age, weight, and overall health, as well as the skill of the surgeon performing the procedure. Physical therapy and rehabilitation are often necessary after a prosthetic knee joint surgery to help the patient regain strength and mobility in the affected leg.

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Pressure Garment

Pressure garments are worn after a burn to control scarring, to help the scar mature, and to improve the look of your injured skin. This is done by putting direct pressure on the skin; thus, the garments need to fit tightly in order to work well. Burn scars mature in 9 months to 3 years . You will need to wear these garments for at least 6 months and perhaps as long as 2 – 3 years. Your doctor will decide when you can stop wearing the garments . -This is achieved by applying 20 -25 millimeters of mercury (mmHg) pressure to the maturing scar 20+ hours a day . -Use of pressure garment are 1) For verrucous Vein 2) For shape the body after liposuction 3) For shaping the chest after Gynecomastia

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Diabetic Foot Solution

A heel ulcer is an open sore that develops on the skin of the heel, typically as a result of prolonged pressure or friction on the area. Heel ulcers can be painful and may take a long time to heal, especially in individuals with poor circulation or diabetes. There are several factors that can contribute to the development of a heel ulcer, including: Prolonged pressure on the heel due to immobility or sitting or lying down for extended periods of time Friction from ill-fitting shoes or socks Poor circulation, which can lead to slow healing and an increased risk of infection Diabetes, which can cause nerve damage and reduce sensation in the feet, making it more difficult to detect and treat ulcers Treatment for a heel ulcer typically involves relieving pressure on the affected area and keeping the wound clean and protected. This may involve the use of specialized dressings, pressure-relieving devices, and wound care techniques. In severe cases, surgery may be necessary to remove damaged tissue or correct underlying structural problems in the foot or ankle. Prevention is key in avoiding heel ulcers. This can involve regular foot inspections, wearing well-fitting shoes, and maintaining good blood sugar control in individuals with diabetes.

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