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'L' Buttress Plate manufacturers produce specialized orthopedic implants designed for the stabilization of fractures, particularly around the distal femur and proximal tibia. These plates provide strong support to prevent collapse of the bone fragments under axial loads. Manufacturers use high-grade stainless steel or titanium to ensure strength, biocompatibility, and corrosion resistance. Reputed companies maintain strict quality control and adhere to international standards like ISO and CE. Many also offer a range of sizes and designs to suit various anatomical requirements and surgical techniques.
DHS (Dynamic Hip Screw) locking plate manufacturers produce specialized orthopedic implants used in the surgical treatment of proximal femur fractures, particularly intertrochanteric fractures. These plates are engineered for secure fixation with locking screw options, enhancing stability and reducing the risk of implant failure. Made from durable, biocompatible materials like stainless steel or titanium, they ensure long-term performance. Manufacturers follow strict quality standards and collaborate with orthopedic professionals to ensure precise design and reliable surgical outcomes
A Calcar Stem Manufacturer specializes in producing orthopedic implants designed for hip replacement surgeries, particularly when there is damage or bone loss near the femoral neck (calcar region). These stems offer enhanced support and load distribution to maintain joint stability and promote proper healing. Manufacturers use high-grade biocompatible materials and precision engineering to ensure strength, durability, and a secure fit. Their products are widely used in complex primary and revision hip procedures.
The Modular Bipolar Cup (With Head) is an advanced hip implant system used in hemiarthroplasty procedures, particularly for treating femoral neck fractures. It features a dual articulation design with a modular cup and a matching femoral head, allowing smoother joint movement and reduced acetabular wear. The modularity offers flexibility during surgery, enabling better anatomical fit and improved stability. This system is designed for durability, patient comfort, and long-term performance