Material: Titanium alloy TC4
Model Number: 1010002
Price: 20~60$
Application: Anterior internal fixation during cervical vertebrae or interbody fusion
Product Introduction
This system consists of titanium plates and screws designed for anterior cervical spine stabilization. All components are made of TC4 titanium alloy, offering high biocompatibility, strength, and corrosion resistance.
The screws are inserted at a fixed or variable angle to the vertebral body, creating an angular tension that enhances plate stability and ensures firm contact with the vertebral surface and bone graft. A secure locking mechanism prevents screw loosening or back-out, forming a stable construct between the plate, screws, vertebrae, and graft material.
During neck flexion, the plate-screw structure acts as a support; during extension, it functions as a tension band—both enhancing internal stability and promoting fusion. This design improves immediate postoperative fixation, reduces graft migration, and allows for early mobilization with minimal external bracing.
The system offers a variety of plate lengths (single to five-level) and both fixed-angle and variable-angle screws to accommodate diverse surgical needs.
Features
1.0ptional strong fixation and semi-strong fixation screws
2.Three-lobed locking mechanism
3.Complete range of titanium plates, including 1-5 sections
4.Provide 3.5/4.0/4.5mm screws
Advantages
•Provides strong anterior support, especially during cervical flexion, helping maintain restored disc height and lordotic curvature after surgery. • Angular screw locking design enhances plate-bone-graft stability and prevents screw back-out, creating a unified construct of plate, screws, vertebra, and graft. • Multiple sizes and configurations of plates and screws allow personalized surgical planning. • Anatomically contoured plate minimizes risk of esophageal irritation and eliminates excessive hardware prominence. • Bi-directional curvature helps maintain or restore physiological cervical alignment, promoting long-term biomechanical stability and reducing adjacent segment degeneration. • Precise plate dimensions improve screw anchorage and minimize exposure of surrounding cervical soft tissue structures.
Application
Cervical disc degenerative disease requiring anterior interbody fusion
Cervical instability due to trauma, tumor, or infection
Cervical spondylotic myelopathy or radiculopathy
Cervical vertebral fractures or dislocations
Revision surgery for pseudarthrosis or hardware failure
Multilevel cervical fusion procedures requiring rigid anterior fixation
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