The Locking Small Plates 3.5 mm Titanium with LCP Screws are orthopedic fixation implants designed for stabilization of appropriately selected fractures involving smaller bones and anatomical regions requiring a compact locking plate construct. The system combines titanium plates with compatible 3.5 mm LCP screws, providing an angular-stable fixation option for selected orthopedic trauma procedures.
Small-bone fractures can present unique fixation challenges because of limited bone dimensions, variable fragment size, periarticular anatomy, and the need to preserve surrounding soft tissues. A dedicated small locking plate system can provide multiple fixation points while allowing the surgeon to select an appropriate plate length according to the fracture pattern and available bone.
The plates are available in 4 through 12-hole configurations, providing a broad range of fixation lengths. Shorter plates may be selected for localized fracture patterns where a limited fixation span is sufficient, while longer plates can provide additional fixation points across more extensive fracture zones or areas requiring greater construct length. The appropriate plate configuration should be selected based on fracture morphology, anatomical location, bone quality, and the surgeon’s fixation strategy.
The system uses 3.5 mm LCP screws, with LCP referring to a Locking Compression Plate system. Compatible locking screws engage threaded plate holes to establish an angular-stable relationship between the screw and plate. Depending on the specific plate design, LCP systems may support locking fixation and other approved fixation techniques. Screw and plate compatibility must always be confirmed before use.
Manufactured from titanium, the plates provide material characteristics widely used in orthopedic implant applications. Titanium offers a favorable strength-to-weight ratio, corrosion resistance, and established biocompatibility. Its relatively lightweight nature can be advantageous when designing fixation systems for smaller anatomical regions. The exact titanium grade, dimensions, mechanical properties, and surface treatment should be verified through the manufacturer’s technical documentation.
The included 3.5 mm LCP screws are intended for use with the corresponding plate system. Proper screw diameter, length, head configuration, thread design, and locking interface are important for achieving the intended fixation. Screw length should be carefully selected according to the anatomical region and available bone stock.
The 85-piece selection provides a range of small locking plate configurations and compatible screws for orthopedic trauma departments, hospitals, surgical centers, and medical implant suppliers. The multiple hole options provide flexibility for different fracture lengths and fixation requirements.
Small locking plates may be considered for appropriately selected fractures involving anatomical regions where a 3.5 mm fixation system is suitable. Depending on the specific plate geometry, applications can include selected small-bone, periarticular, metaphyseal, and other orthopedic fracture fixation procedures. The precise indication depends on the plate design, anatomical location, product labeling, fracture morphology, and surgeon assessment.
Accurate fracture reduction and plate positioning are essential. The surgeon should use compatible system-specific instruments, including drills, drill guides, depth gauges, screwdrivers, and reduction instruments, according to the manufacturer’s surgical technique. Appropriate imaging should be used as necessary to verify fracture alignment, implant position, and screw placement.
The plates and screws should be handled carefully to prevent contamination, scratching, deformation, or damage to the locking interfaces. Plate bending or modification should only be performed when specifically permitted by the manufacturer. Unauthorized modification can affect the mechanical properties or locking function of the implant.
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 in accordance with applicable manufacturer instructions.
With 4–12 hole configurations, compatible 3.5 mm LCP screws, titanium construction, and an 85-piece selection, this small locking plate system provides a versatile orthopedic fixation option for appropriately selected small-bone and periarticular fracture procedures.
Key Features
- Designed for small-bone and orthopedic fracture fixation.
- Available in 4 to 12-hole configurations.
- Compatible with 3.5 mm LCP screws.
- Titanium plate construction.
- Locking screw interface supports angular-stable fixation.
- Multiple plate lengths accommodate different fracture patterns.
- Suitable for selected periarticular and metaphyseal applications.
- Provides multiple fixation points for fracture stabilization.
- Titanium offers a favorable strength-to-weight ratio.
- 85-piece selection provides multiple plate and screw configurations.
- Suitable for professional orthopedic trauma applications.
- Requires compatible LCP surgical instrumentation.
Product Specifications
| Specification | Details |
|---|---|
| Product Name | Locking Small Plates |
| Plate Type | Small Locking / LCP Plate |
| Hole Options | 4 to 12 Holes |
| Screw Size | 3.5 mm LCP Screws |
| Material | Titanium |
| Screws | 3.5 mm LCP Screws Included |
| Quantity | 85 Pieces |
| Fixation Type | Locking / Angular-Stable Fixation |
| Primary Application | Small-Bone & Orthopedic Fracture Fixation |
| Plate Configuration | Small Bone |
| Surgical Specialty | Orthopedic Trauma |
| Intended Use | Professional orthopedic surgical applications |
| Instrument Compatibility | Use compatible 3.5 mm LCP instrumentation |
| Sterilization | Follow product-specific manufacturer instructions and validated protocols |
FAQs
1. What are Locking Small Plates used for?
Locking Small Plates are orthopedic implants designed for appropriately selected fractures involving smaller bones and anatomical regions where a compact locking plate system is clinically appropriate.
2. What hole configurations are available?
The system includes 4 through 12-hole configurations, providing multiple options for plate length and fixation span.
3. What size screws are used with these plates?
The product is designed for 3.5 mm LCP screws, which are compatible with the specified locking plate system.
4. What does LCP mean?
LCP stands for Locking Compression Plate. LCP systems incorporate threaded holes that can accept compatible locking screws and may support approved fixation techniques depending on the specific plate design.
5. What material are the plates made from?
The plates are manufactured from titanium, a material widely used in orthopedic implants due to its corrosion resistance, biocompatibility, and favorable strength-to-weight characteristics.
6. What types of fractures can small locking plates treat?
Depending on the specific plate geometry and approved indications, they may be considered for selected small-bone, periarticular, metaphyseal, and other orthopedic fractures where a 3.5 mm locking fixation system is appropriate.
7. Why are multiple hole configurations available?
Different hole counts provide different plate lengths and fixation spans. The surgeon can select the appropriate configuration according to fracture extent, anatomical location, bone quality, and required fixation.
8. What is the advantage of locking fixation?
Compatible locking screws engage the threaded plate holes to establish an angular-stable plate-screw connection. This can provide a stable fixation construct in appropriately selected fractures.

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