This single-axis modular knee joint with shin folding mechanism is designed to be used in various modular prostheses. Otp-3.01 is best for patients with middle and short stump lengths.
Loading limit - 100 kg.
Prosthetic Leg Knee Joint The function of the prosthetic leg knee joint is to simulate the flexion and extension (bending and straightening) of the anatomical knee joint during the movement of the amputee. When used in conjunction with a prosthetic foot, the knee supports the amputee while providing a smooth and economical gait. The amputee relies on the prosthetic knee for stability during ambulation. In order to provide stability, the knee needs to remain stable or locked during walking. Many variations of the basic joint have been designed; from a simple hinge to a self-aware, computer-controlled knee. Clinical prosthetists are trained to understand the different types of knees. Their expertise is critical in assisting amputees and their caregivers in deciding which knee will maximize the amputee's potential. The main function of prosthetic leg knee joint is to help the amputee to simulate the bending and extension of the knee joint when moving. At the same time, when the prosthetic foot is used in conjunction, the knee plays a role to achieve a smooth and relaxed gait. Mechanical Knees The feature of Mechanical Knees is to help provide standing bending, reduce the pressure on the back and buttocks through the knee joints, and make the gait cycle smoother. Pneumatic Knee Pneumatic knee uses the air in the knee to adjust the walking speed, and as the speed increases or decreases, the pneumatic system will adjust the speed of swinging forward or bending backwards. Such knees are more active for amputees. They can Change the walking speed on your own and donâ??t need a walking device. Prosthetic knee joints offer several advantages for individuals who have undergone lower limb amputations. These advantages can significantly improve the overall quality of life and mobility for amputees.
Kubba Tactical Knee Pads Function: The knee joint is fixed, which improves the stability and strength of the knee, reduces the burden of the knee ligament when raising the leg and jumping, and enhances the protection of the knee ligament, with good air permeability and comfortable wearing feeling. Specification for elbow pads: Plastic protective block: PVC, Fabric: 600D Oxford cloth, Buffer layer: 15mm thick EVA foam sheet Lining: Mesh Army green color, with embroidered  Kubba  logo 6.Impact resistance: withstand the impact of 120 kinetic energy Structure: The plastic protective block is to resist hits and collisions and disperse the impact force. The middle foam absorbs impact energy Suitable environment temperature: -20~+55 Weight: 0.18kg/ pair Specification for knee pads: Plastic protective block: PVC, Fabric: 600D Oxford cloth, Buffer layer: 15mm thick EVA foam sheet, Lining: Mesh Army green color, with embroidered  Kubba  logo Impact resistance: withstand the impact of 120 kinetic energy Structure: The plastic protective block is to resist hits and collisions and disperse the impact force. The middle foam absorbs impact energy Suitable environment temperature: -20~+55 Weight: 0.25kg/pair
Prosthetic Pneumatic Knee Joint This multi-centered prosthetic knee joint with pneumatic swing phase control provides reliable standing phase safety for users with moderate activity levels. The smooth and powerful single-chamber pneumatics (each chamber for flexion and extension damping) does not run out of air during the swing phase, even at different walking speeds. Smooth flexion and extension movements can be achieved, resulting in an approximation of the physiological gait pattern. The joint geometry here effectively shortens the prosthesis during oscillation, thereby increasing ground clearance. Four-bar pneumatic knee joint is made of aviation grade ultra-light, super-hard magnesium alloy material, with beautiful appearance. The weight was 0.95kg, the maximum load was 125kg, and the knee flexion was 150 degrees. It adopts the four-bar linkage air pressure design, stable and natural walking, more light, mor durable, less energy consumption, easy control. If you have questions about the prosthetic knee option, please contact us
Single Axis Knee Joint with Adjustable Constant Friction, artificial limbs prosthetic leg knee joint single axis prosthetic knee with Adjustable Constant Friction suitable for persons with above-knee amputation, It has moderate functional requirements and moderate support stability. It is not suitable for persons with higher function requirements. Single Axis Prosthetic Knee Single axis prosthetic knee with Adjustable Constant Friction suitable for persons with above-knee amputation, It has moderate functional requirements and moderate support stability. It is not suitable for persons with higher function requirements. The swing of the single axis prosthetic knee consists in connection between the swing axis and the upper part of the joint and between the single axis prosthetic knee and the lower part of the joint. The stability during the stance period is achieved by adjust the prosthetic knee joint behind the gravity center line of the body during alignment. The knee is designed to utilize the swing axis and brake axis as a load-dependent brake. The axis friction and the extension assist are adjustable for improved control of swing phase.
Fresenius fx8 dialyzer is a part of FX Series dialyzer. Its a single use dialyzer. Fx8 Dialyzer are based on optimized and redefine handling. There are several high end technologies have been combined to provide the distinctive functional feature of FX dialyzer. The structure of fibre bundle, membrane ,flow port and housing design provide the performance of the dialyzer along with safety and handling. The optimal membrane permeability design gives minimal loss of blood components. It gives homogeneous blood flow inside the dialyzer.
Elbow Joint Splint (AJY-S12) It is used for elbow joint fixation for tendon, soft tissue, and nerve injury in the elbow joint in time for postoperative fixation of the joint. 448*260*3.2mm LOW TEMPERATURE THERMOPLASTIC SHEET Product features: Low temperature thermoplastic sheet is a new type of material made of specially synthesized polymer polycaprolactone treated by a series of chemical methods. Molecules are in a stable state at room temperature (10-30C), and can be softened after being heated in 65-70C water for 1-3 minutes. Curing in 3-5 minutes at room temperature. It has the advantages of light weight, high strength, good air permeability, not afraid of water, non-toxic, odorless, non-irritating to the skin, etc., and has biodegradability. Scope of application: 1. Fixation after reduction of fractures and joint dislocations 2. Postoperative fixation of soft tissue injuries such as joint ligaments, nerve and tendon injuries 3. Bone, joint tuberculosis, acute and chronic osteomyelitis, septic arthritis, primary bone Fixation during conservative treatment such as tumor metastasis or after debridement 4. Joint deformity, nerve palsy, cerebral palsy, scoliosis correction and postoperative fixation in children and fixed 5. Fixation after burns and other plastic surgery operations 6. Production and application of rehabilitation braces and orthoses 7. Posture placement and fixation during radiotherapy
The Zimmer M/L Taper Hip Prosthesis is a product line from Zimmer Biomet, a company that specializes in orthopedic implants and devices. The M/L Taper Hip Prosthesis is used in hip replacement surgeries and consists of a femoral stem that is implanted into the patient's femur. The "M/L 12/14 Taper" designation likely refers to the taper of the femoral stem, with 12/14 indicating the taper size. The "Standard Offset" specification suggests a standard offset design for the femoral stem. The offset refers to the distance between the center of the femoral head and the center of the femoral stem. Standard offset is a common configuration, but there are also variations such as high offset or low offset stems to accommodate different patient anatomies. Key features and considerations for the Zimmer M/L Taper Hip Prosthesis may include: Material: The femoral stem is typically made of biocompatible materials such as titanium or cobalt-chromium alloy. Taper Design: The taper design facilitates the connection between the femoral stem and the femoral head component. Modularity: Some hip prostheses, including those with taper connections, offer modularity, allowing surgeons to choose different head sizes and neck lengths to optimize patient fit. Surgical Technique: Implantation involves removing the damaged part of the hip joint and replacing it with the prosthetic components. Range of Motion: The design aims to provide stability, durability, and a suitable range of motion for the patient.
Thumb plate (tubular type) AJY-S03 For the first metacarpophalangeal joint, thumb phalanx, metacarpal fracture and wrist dislocation fixation. 210*145*3.2mm LOW TEMPERATURE THERMOPLASTIC SHEET Product features: Low temperature thermoplastic sheet is a new type of material made of specially synthesized polymer polycaprolactone treated by a series of chemical methods. Molecules are in a stable state at room temperature (10-30C), and can be softened after being heated in 65-70C water for 1-3 minutes. Curing in 3-5 minutes at room temperature. It has the advantages of light weight, high strength, good air permeability, not afraid of water, non-toxic, odorless, non-irritating to the skin, etc., and has biodegradability. Scope of application: 1. Fixation after reduction of fractures and joint dislocations 2. Postoperative fixation of soft tissue injuries such as joint ligaments, nerve and tendon injuries 3. Bone, joint tuberculosis, acute and chronic osteomyelitis, septic arthritis, primary bone Fixation during conservative treatment such as tumor metastasis or after debridement 4. Joint deformity, nerve palsy, cerebral palsy, scoliosis correction and postoperative fixation in children and fixed 5. Fixation after burns and other plastic surgery operations 6. Production and application of rehabilitation braces and orthoses 7. Posture placement and fixation during radiotherapy