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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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Orthotic

KAFO with Offset Knee Joint drop lock type  A knee-ankle-foot orthosis (KAFO) consists of a plastic AFO or an AFO with metal uprights, a mechanical knee joint, and a plastic thigh cuff or 2 metal thigh bands. KAFO’s can be used in quadriceps paralysis or weakness to maintain knee stability and control flexible genu valgum or varum.  KAFO’s are also used to limit the weight bearing of the thigh, leg, and foot with quadrilateral or ischial containment brim. A KAFO is more difficult to don and doff than an AFO, so it is not recommended for patients who have moderate-to-severe cognitive dysfunction.  The most common causes of muscle weakness include: -Poliomyelitis -Muscular Dystrophy -Multiple Sclerosis -Spinal cord injury

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ABOVE KNEE PROSTHESIS

Cutting-Edge Prosthetic Limb: Hydraulic Knee Joint, Carbon Fiber Foot, Turntable Looking for a top-of-the-line prosthetic limb? Our advanced model boasts a hydraulic knee joint, carbon fiber foot, and turntable mechanism, offering unmatched performance and comfort. Hydraulic Knee Joint: Our prosthetic features a state-of-the-art hydraulic knee joint, providing smooth, natural movement akin to a real knee. With customizable damping and resistance settings, users can tailor the joint's behaviour to their activity level and terrain, ensuring a perfect fit for every lifestyle. Carbon Fiber Foot: Crafted from lightweight, resilient carbon fiber, our foot component combines strength with agility, ideal for dynamic movements. Anatomically inspired design and flexion points enhance comfort and promote a natural gait, empowering users to move with confidence and ease. Turntable Feature: Unique to our prosthetic limb is the integrated turntable mechanism, granting smooth rotation above the knee joint helping patient to seat with cross leg. Seamless Integration and Control: Our prosthetic limb seamlessly integrates hydraulic, carbon fiber, and turntable components into a unified system. Durability and Maintenance: Built to last, our prosthetic limb withstands daily wear and tear, thanks to durable carbon fiber construction and reliable hydraulic components. Regular servicing by certified professionals ensures optimal performance and longevity, guaranteeing peace of mind for users on the go. Conclusion: In summary, our cutting-edge prosthetic limb sets the standard for innovation and functionality in the industry. With advanced features like hydraulic knee joints, carbon fiber feet, and turntable mechanisms, users experience unparalleled mobility and comfort, empowering them to embrace life's adventures fully.

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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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