The Superior Anterior Clavicle S Locking Plate Titanium is an orthopedic fixation implant designed for stabilization of appropriately selected clavicle fractures requiring operative fixation. Its superior anterior “S” shaped anatomical configuration is intended to accommodate the curved contour of the clavicle while providing multiple fixation points through compatible locking screws.
Clavicle fractures are common orthopedic trauma injuries and may present as simple, displaced, shortened, unstable, or comminuted fractures. Although many clavicle fractures can be managed without surgery, operative stabilization may be considered in appropriately selected cases based on fracture displacement, shortening, instability, comminution, soft-tissue condition, patient requirements, and surgeon assessment.
The superior anterior “S” plate design is intended to follow the general anatomical contour of the clavicle. Its shaped profile can facilitate positioning along the superior and anterior aspects of the bone. Because clavicular anatomy varies significantly between individuals, appropriate plate selection, positioning, and intraoperative assessment remain important for achieving the intended fixation construct.
The locking plate incorporates threaded fixation holes designed for use with compatible locking screws. When correctly engaged, the screw head locks into the plate hole, creating an angular-stable connection between the screw and plate. This can help maintain the intended screw trajectory and provide stable fixation in appropriately selected fracture patterns. The exact screw dimensions and permissible insertion angles should be verified against the manufacturer’s technical specifications.
The system includes 3-, 6-, and 9-hole configurations, offering different plate lengths for different fracture patterns. Shorter plates may be selected for appropriately localized fractures where a limited fixation span is adequate, while longer plates can provide additional fixation points across more extensive fracture zones. The final plate selection should be based on fracture morphology, anatomical location, bone quality, and the surgeon’s fixation strategy.
The product is available in left and right configurations to correspond with the patient’s clavicular anatomy. Side-specific plate geometry helps facilitate appropriate positioning and reduces the need for intraoperative adaptation. Proper implant placement should be confirmed using the applicable surgical technique and appropriate imaging.
The plates are manufactured from titanium, a material widely used in orthopedic implant applications because of its favorable strength-to-weight characteristics, corrosion resistance, and established biocompatibility. Titanium can provide a relatively lightweight implant while maintaining the mechanical characteristics required for orthopedic fixation. The exact titanium grade, dimensions, mechanical properties, and surface treatment should be verified through the manufacturer’s technical documentation.
The 83-piece selection provides multiple left- and right-sided plate configurations for orthopedic trauma departments, hospitals, shoulder surgery units, surgical centers, and medical implant suppliers. Multiple hole options allow selection of an appropriate plate length according to the fracture and desired fixation span.
Superior anterior clavicle locking plates may be considered for selected displaced, unstable, shortened, comminuted, or otherwise clinically appropriate clavicle fractures requiring surgical stabilization. The implant should not be considered universally appropriate for every clavicle injury. Clinical examination, radiographic assessment, fracture morphology, bone quality, and surgeon judgment should guide treatment and implant selection.
Accurate fracture reduction and plate positioning are essential for obtaining the intended fixation construct. The surgeon should use compatible drills, drill guides, depth gauges, screwdrivers, and reduction instruments according to the manufacturer’s surgical technique. Intraoperative imaging may assist with confirming fracture alignment, plate placement, and screw length.
Screw length requires particular attention in clavicle fixation because the clavicle is located close to important neurovascular and thoracic structures. Appropriate measurement and trajectory planning can help reduce the risk of inappropriate screw penetration. The surgeon should follow the manufacturer’s recommended drilling and screw insertion technique.
The implant should be handled carefully to prevent contamination, scratching, deformation, or damage to the threaded locking holes. Plate bending or modification should only be performed when explicitly permitted by the manufacturer. Improper bending can compromise the locking interface or structural integrity of the plate.
Sterility, packaging, storage, and processing requirements depend on the manufacturer’s labeling and product configuration. Reusable surgical instruments should be cleaned, inspected, packaged, and sterilized using validated healthcare-facility procedures according to applicable manufacturer instructions.
With 3–9 hole configurations, left- and right-sided anatomical options, superior anterior “S” geometry, titanium construction, and an 83-piece selection, this clavicle locking plate system provides a versatile orthopedic fixation option for appropriately selected clavicle fracture procedures.
Key Features
- Designed for clavicle fracture fixation.
- Superior anterior “S” shaped anatomical configuration.
- Available in 3, 6, and 9-hole options.
- Left and right anatomical versions.
- Manufactured from titanium.
- Locking screw interface supports angular-stable fixation.
- Multiple plate lengths accommodate different fracture patterns.
- Suitable for selected displaced and unstable clavicle fractures.
- Provides multiple fixation points along the clavicle.
- 83-piece selection provides multiple implant configurations.
- Titanium offers a favorable strength-to-weight ratio.
- Requires compatible locking plate instrumentation.
Product Specifications
| Specification | Details |
|---|---|
| Product Name | Superior Anterior Clavicle “S” Locking Plate |
| Anatomical Site | Clavicle |
| Plate Position | Superior Anterior |
| Plate Design | Anatomical “S” Locking Plate |
| Hole Options | 3, 6 & 9 Holes |
| Side Options | Left & Right |
| Material | Titanium |
| Screws | Compatible Locking Screws |
| Quantity | 83 Pieces |
| Fixation Type | Locking / Angular-Stable Fixation |
| Primary Application | Clavicle Fracture Fixation |
| Surgical Specialty | Orthopedic Trauma / Shoulder Surgery |
| Intended Use | Professional orthopedic surgical applications |
| Instrument Compatibility | Use compatible locking plate instrumentation |
| Sterilization | Follow product-specific manufacturer instructions and validated protocols |
FAQs
1. What is a Superior Anterior Clavicle S Locking Plate?
It is an anatomical orthopedic locking plate designed for selected clavicle fracture fixation. The superior anterior “S” profile is intended to accommodate the general contour of the clavicle while compatible locking screws provide angular-stable fixation.
2. What hole configurations are available?
The system includes 3-, 6-, and 9-hole configurations, providing different plate lengths and fixation spans.
3. Are left and right plates available?
Yes. The product includes left and right versions to correspond with the patient’s anatomical side.
4. What material is the plate made from?
The plate is manufactured from titanium, a material widely used for orthopedic implants due to its corrosion resistance, biocompatibility, and favorable strength-to-weight characteristics.
5. What is the advantage of a locking clavicle plate?
Compatible locking screws engage threaded plate holes to establish an angular-stable plate-screw connection. This can help maintain the fixation construct in appropriately selected fractures.
6. What types of clavicle fractures may be treated with this plate?
It may be considered for selected displaced, unstable, shortened, comminuted, and other clinically appropriate clavicle fractures requiring operative fixation.
7. Why are different hole configurations available?
Different hole counts provide different plate lengths. The surgeon can select an appropriate configuration according to fracture location, fracture extent, bone quality, and desired fixation span.
8. Why is screw length important in clavicle fixation?
The clavicle is positioned near important neurovascular and thoracic structures. Correct screw length and trajectory are therefore important for safe and effective fixation.
9. How many pieces are included?
The product is supplied as an 83-piece selection of left- and right-sided superior anterior clavicle “S” locking plates and associated compatible components according to the specified set configuration.

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