The system consists of a fixation plate and screws. The main body of the fixation plate is made from Ti6Al4V titanium alloy powder, which complies with the YY/T 1701 standard, using an electron beam melting process. The screws are made from TC4ELI material, in accordance with the GB/T 3810 standard. The system is available in both sterile and non-sterile packaging, with the sterile packaging being irradiated for sterilization, and a shelf life of 5 years.
Scope of Application
It is suitable for lamina formation after spinal canal enlargement decompression surgery in the spinal segments (C3-T3).
Product Features
★ Perfect Fit to the Vertebral Body: The additive manufacturing process allows for a better match with the size of the vertebral body.
★ Optimized Spinal Canal Space: The 3D-printed porous regions eliminate the need for bone grafting, effectively supplementing bone defects and providing better spinal canal space.
★Prevention of Tissue Irritation: The smooth inner surface helps protect the spinal canal, reducing the risk of tissue irritation.
★ Variety of Options: The diverse hole structure arrangements offer more clinical flexibility and options.
Product Advantages
• World's First Additive Manufactured Vertebral Molding Plate: The first vertebral molding plate utilizing additive manufacturing, protected by an invention patent.
•Optimal Reshaping of the Conical Aperture Environment: Incorporating 3D-printed porous regions, it creates a smooth transition for the conical aperture, eliminating the need for bone grafting, effectively addressing bone defects, and optimizing spinal canal space.
•Additive Manufacturing Process Tailored to Vertebral Anatomy: The additive manufacturing technique precisely conforms to the shape of the vertebral incision, ensuring enhanced initial fixation stability. The diverse hole arrangements offer adaptability for various clinical applications, providing a broader range of options to meet specific procedural requirements.