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'pressure sores'

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Pressure Garment

Pressure garment for Burn case Price start from 2000 up to 20000 depending on condition area -We manufacture all variety off pressure garment. They are made up of 100% cotton and lycra material. -We manufacture the garment with ZIP and two adjustable hook so donning and doffing is easy 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.

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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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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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Diabetic Foot Solution

Charcot foot, which is a condition that affects the bones in the foot and ankle and often leads to joint deformities and instability, specialized insoles can be crucial in providing support and preventing further damage. Here are a few types of insoles that might be used: Custom Orthotics: These are specially designed to match the unique contours of your feet. They help distribute pressure evenly, stabilize the foot, and prevent further deformities. A podiatrist or orthotist can create these based on a detailed assessment of your foot structure and needs. Offloading Insoles: These are designed to reduce pressure on specific areas of the foot. For Charcot foot, offloading insoles can help redistribute pressure away from the affected areas to help prevent ulcers and further complications. Rocker Sole Insoles: Rocker soles have a rounded heel-to-toe transition which can help reduce stress on the foot while walking. This can be particularly helpful for individuals with Charcot foot to improve gait and reduce discomfort. Cushioned Insoles: Providing additional cushioning can help absorb shock and reduce the impact on the foot. This can be beneficial if you experience pain or discomfort due to Charcot foot. Rigid Insoles: Sometimes, a more rigid insole is needed to offer strong support and prevent excessive movement of the foot, which can be helpful in managing the condition and preventing further deformity.

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Prosthetic

ABOVE KNEE PROSTHESIS (ARTIFICAIL LIMB ABOVE THE KNEE) An above-knee prosthesis, also known as a transfemoral prosthesis, is an artificial limb designed to replace a missing leg above the knee joint. This sophisticated piece of technology plays a pivotal role in restoring mobility and functionality for individuals who have undergone knee amputations. Components and Structure: Socket: The custom-made socket is a crucial component that interfaces with the residual limb. It provides a secure and comfortable fit, allowing for weight distribution and control. Evolution Healthcare Pvt. Ltd. produces unique designs that give more comfort to the patient. There are so many socket designs, like MAS sockets, Ischial containment sockets, narrow AP ML sockets, and quad-socket designs. We follow the most advanced socket design called MAS socket design. Liner: The liner is a soft, cushioning material that goes between the residual limb and the socket. It enhances comfort, reduces friction, and aids in shock absorption. There two type liner according to material one is silicon prosthetic liner and thermos polyurethane prosthetic liner. According to suspension system of the prosthesis there 3 type liner cushion liner, Locking liner and suction liner. EVOLUTION HEALTHCARE PRIVATE LIMITED provide more advance prosthetic liner which are more durable and give more comfort to the patient. Pylon: A lightweight, durable rod or tube connects the socket to the foot. It provides structural support and flexibility. Knee Joint: The knee joint is a pivotal element in above-knee prosthetics. Different types of knee joints are available, including mechanical, pneumatic, hydraulic, and microprocessor-controlled options. Each type offers specific advantages tailored to the user's needs. Mechanical Knee Joint: Relies on mechanical components for movement. This type is often simpler in design but still effective for many users. Pneumatic Knee Joint: Operates with the use of air pressure, offering a responsive and efficient mechanism for walking. It gives a smooth gait and reduces energy expenditure. It helps the patient change 3/ 4 speed. The most important thing is it requires no maintenance. Hydraulic Knee Joint: Utilizes hydraulic fluid to control the movement, providing a smooth and natural gait. It contributes to stability and adaptability on various terrains. By this joint patient can change any number of speed. And this joint very helpful to descend stair like normal person. Microprocessor Knee Joint: Incorporates advanced technology, using sensors and a microprocessor to analyse walking patterns and adjust the prosthesis in real-time. This innovation enhances adaptability to different walking speeds and terrains. Foot: The prosthetic foot replicates the natural movement and function of a biological foot. Different designs cater to specific activities and preferences. Advancements in Above-Knee Prosthetics: Recent advancements have significantly improved above-knee prosthetics, focusing on increased comfort, natural movement, and overall user satisfaction. These advancements include lightweight materials, improved socket designs, and enhanced control mechanisms in electronic knee joints. Knee Amputation Rehabilitation: Rehabilitation following knee amputation is a critical phase in adapting to an above-knee prosthesis. It involves a comprehensive approach, including physical therapy, gait training, and psychological support, to ensure a successful transition to the use of the prosthetic limb. In conclusion, above-knee prosthetics play a vital role in restoring mobility and enhancing the quality of life for individuals who have undergone knee amputation. With ongoing advancements in technology and rehabilitation strategies, these prosthetic devices continue to evolve, providing users with more comfort, functionality, and a greater sense of independence. Evolution Healthcare Pvt Ltd provide innovative technology for above knee prosthesis far better quality then Jaipur foot technology. We provide Hi-tech prosthesis with international German technology and USA technology using light weight material like carbon fiber. The light weight carbon fiber foot and carbon fiber socket make the prosthesis lightest among the other prosthetic orthotic service provider or prosthetic manufacturer. Our prosthetic orthotic centre situated in Maharashtra at Pune and Mumbai, in West Bengal at Kolkata, In Gujarat at Surat, In Goa and also we provide the service in PAN INDIA by our qualified prosthetist and orthoptist as well as trained technicians. To learn more, contact us or visit our nearest centre to your city.

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Orthotic

Neurotronic KAFO  The Neurotronic knee joint system is a sophisticated electro mechanical knee control component designed specifically for people with knee extensor weakness, knee instability or loss of knee control and sets the benchmark for this class of limb control technology.  The Neurotronic is incorporated into a discreet lightweight carbon frame, locking automatically in stance phase and free moving in swing phase. In stance phase, the Neurotronic stabilises the knee in any position to enable the user to safely load the effected limb even when the knee joint is flexed or bent. During swing phase, the Neurotronic allows the knee to move freely to achieve a natural gait pattern without the compensations seen with conventional designs.  The electromechanical knee joint system is controlled either by a pressure sensor under the foot piece or by motion sensors integrated in the controller. The control mechanism incorporates an inclinometer and accelerometer motion sensors that detect the movement and position of the lower leg.  When standing with the orthosis or just before heel strike, the motion sensors lock the Neurotronic system knee joint. The motion detection is sensitive to speed and the joint will lock regardless of length and speed of steps and regardless of a hill gradient.

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