The Locking Distal Fibula Plates Titanium Grade 5 are orthopedic fixation implants designed to stabilize appropriately selected fractures of the distal fibula. Their anatomical configuration is intended to accommodate the distal fibular region while compatible locking compression plate (LCP) screws provide an angular-stable fixation construct.
Distal fibula fractures, including fractures involving the lateral malleolus, can occur as isolated injuries or as part of more complex ankle fracture patterns. The stability of the ankle mortise, fracture displacement, syndesmotic involvement, soft-tissue condition, and associated injuries all influence treatment selection. In appropriately selected cases requiring operative fixation, a dedicated distal fibula locking plate can provide a stable platform for fracture reduction and fixation.
The plate’s locking design allows compatible screw heads to engage threaded plate holes. This creates an angular-stable connection between the screws and plate, helping maintain the intended screw trajectory and fixation construct. Locking fixation may be particularly useful in selected fractures where bone quality, comminution, or distal fragment size makes conventional fixation challenging.
The system is available in 8-, 10-, and 12-hole configurations, offering multiple plate lengths for different fracture patterns and fixation requirements. Longer configurations can provide additional fixation points along the fibular shaft when a greater fixation span is clinically appropriate. Plate length should be selected according to fracture location, fracture morphology, patient anatomy, bone quality, and the surgeon’s fixation strategy.
The plates are supplied in left and right configurations to accommodate the corresponding anatomical side. Side-specific plate geometry can support appropriate positioning along the distal fibula while maintaining alignment with the patient’s anatomy. Proper plate positioning should be confirmed intraoperatively using the applicable surgical technique and imaging.
Manufactured from Titanium Grade 5, the plates provide material characteristics widely used in orthopedic implant applications. Titanium Grade 5, commonly identified as Ti-6Al-4V, offers a favorable combination of strength, corrosion resistance, and biocompatibility. Its relatively high strength-to-weight ratio makes it suitable for many orthopedic implant applications. The exact material specification and mechanical properties should be verified against the manufacturer’s technical documentation.
The included LCP screws are intended to provide compatible locking fixation with the corresponding plates. Screw diameter, length, head geometry, thread configuration, and locking interface should be confirmed before use. Correct screw length is particularly important around the ankle because the distal fibula is adjacent to the ankle joint and surrounding soft-tissue structures.
The 93-piece selection provides multiple left- and right-sided plate configurations and compatible screws. This can support orthopedic trauma departments, hospitals, ankle surgery units, surgical centers, and medical implant suppliers requiring multiple distal fibula fixation options.
Distal fibula locking plates may be considered for selected displaced lateral malleolus fractures, unstable ankle fractures, comminuted distal fibula fractures, and other appropriately selected fibular injuries requiring surgical stabilization. The implant should not be considered appropriate for every ankle fracture. Clinical examination, radiographic assessment, fracture classification, syndesmotic stability, soft-tissue condition, and surgeon judgment should guide treatment.
Accurate reduction of the distal fibula and restoration of appropriate ankle alignment are essential components of fracture fixation. The surgeon should use compatible drills, drill guides, depth gauges, screwdrivers, and reduction instruments according to the manufacturer’s surgical technique. Imaging should be used as appropriate to evaluate fracture reduction, plate position, and screw length.
The plate and screws should be handled carefully to prevent contamination, scratches, deformation, or damage to the locking holes. Plate bending or modification should only be performed when explicitly permitted by the manufacturer and using the recommended technique. Improper modification may compromise the locking interface or mechanical integrity.
Sterility, packaging, storage, and processing requirements depend on the manufacturer’s product labeling and supplied configuration. Reusable surgical instruments should be cleaned, inspected, packaged, and sterilized using validated healthcare-facility procedures according to applicable manufacturer instructions.
With 8–12 hole options, left- and right-sided configurations, LCP screw compatibility, Titanium Grade 5 construction, and a 93-piece selection, this distal fibula locking plate system provides a versatile orthopedic fixation option for appropriately selected ankle and distal fibula fracture procedures.
Key Features
- Designed for distal fibula and lateral malleolus fracture fixation.
- Available in 8, 10, and 12-hole configurations.
- Left and right anatomical options.
- Manufactured from Titanium Grade 5.
- Compatible LCP locking screws included.
- Locking interface supports angular-stable fixation.
- Multiple plate lengths accommodate different fracture patterns.
- Suitable for selected displaced and unstable ankle fractures.
- Provides multiple fixation points along the distal fibula.
- 93-piece selection offers multiple plate and screw configurations.
- Titanium Grade 5 provides high strength-to-weight performance.
- Requires compatible orthopedic locking plate instrumentation.
Product Specifications
| Specification | Details |
|---|---|
| Product Name | Locking Distal Fibula Plates |
| Anatomical Site | Distal Fibula / Lateral Malleolus |
| Plate Type | Locking Compression Plate |
| Hole Options | 8, 10 & 12 Holes |
| Side Options | Left & Right |
| Material | Titanium Grade 5 |
| Screws | LCP Screws Included |
| Quantity | 93 Pieces |
| Fixation Type | Locking / Angular-Stable Fixation |
| Primary Application | Distal Fibula & Ankle Fracture Fixation |
| Plate Configuration | Anatomical Distal Fibula |
| Surgical Specialty | Orthopedic Trauma / Foot & Ankle Surgery |
| Intended Use | Professional orthopedic surgical applications |
| Instrument Compatibility | Use compatible LCP locking instrumentation |
| Sterilization | Follow product-specific manufacturer instructions and validated protocols |
FAQs
1. What are Locking Distal Fibula Plates used for?
Locking Distal Fibula Plates are orthopedic implants designed to stabilize appropriately selected fractures of the distal fibula, including selected lateral malleolus and ankle fractures.
2. What hole configurations are available?
The product includes 8-, 10-, and 12-hole configurations, providing different plate lengths and fixation spans.
3. Are left and right plates available?
Yes. The system includes left and right versions for the corresponding anatomical side.
4. What material are these plates made from?
The plates are manufactured from Titanium Grade 5, commonly known as Ti-6Al-4V, a high-strength titanium alloy widely used in orthopedic implant applications.
5. Are LCP screws included?
Yes. The product specifies that LCP screws are included with the distal fibula locking plates.
6. What is the benefit of locking fixation?
Locking screws engage threaded plate holes to establish an angular-stable connection. This can provide stable fixation in appropriately selected fractures and may be useful when bone quality or fracture comminution presents fixation challenges.
7. What types of fractures can these plates be used for?
They may be considered for selected displaced lateral malleolus fractures, unstable ankle fractures, comminuted distal fibula fractures, and other distal fibular injuries requiring operative fixation.
8. Why are different plate lengths available?
Different hole counts provide different fixation lengths. The surgeon can select a suitable configuration based on fracture location, fracture extent, bone quality, and the desired fixation span.

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