The Dorsal Distal Radius Variable Angle T Plate Titanium is an orthopedic fixation plate designed for surgical stabilization of appropriately selected distal radius fractures requiring dorsal plate fixation. Its T-shaped configuration is intended to provide a specialized fixation platform around the distal radius, while variable-angle locking technology allows compatible screws to be positioned at different permitted trajectories according to the surgical requirements.
The dorsal distal radius region presents complex anatomical and fracture-management considerations. A specialized T-plate can provide a dedicated fixation option for fracture patterns where dorsal stabilization is clinically indicated. The plate geometry is intended to support positioning around the distal radius while providing multiple screw fixation points for securing fracture fragments.
The variable-angle locking design allows compatible locking screws to engage the plate at different permitted trajectories rather than being restricted to one predetermined screw axis. This feature can provide the surgeon with additional flexibility when planning screw placement around fracture fragments and anatomical structures. The permitted range of angulation and compatible screw specifications must be confirmed according to the manufacturer’s technical documentation.
The plate is available in 3-, 4-, and 5-hole configurations, providing multiple options for fixation length and screw distribution. Plate selection should be based on the patient’s anatomy, fracture morphology, bone quality, available bone stock, and the desired fixation construct. The appropriate plate configuration should be determined during surgical planning and confirmed intraoperatively.
Manufactured from titanium, the plate provides material characteristics commonly valued in orthopedic implant applications. Titanium offers a favorable strength-to-weight ratio, corrosion resistance, and established biocompatibility characteristics. The exact titanium grade, mechanical properties, surface treatment, and dimensional specifications should be verified through the manufacturer’s product documentation.
The set includes compatible screws, providing a convenient plate-and-screw configuration for orthopedic surgical inventory. Correct screw selection is essential for maintaining the intended locking relationship between the screw head and plate. Screws should be inserted using compatible guides and drivers and according to the applicable surgical technique.
The 56-piece selection provides multiple plate and screw options for orthopedic trauma facilities, hospitals, wrist surgery centers, and medical implant suppliers. Maintaining different hole configurations can help surgical teams select an appropriate construct according to individual patient anatomy and fracture requirements.
Variable-angle dorsal plating may be considered for selected distal radius fractures where dorsal fixation is clinically appropriate. The implant should not be considered suitable for every fracture pattern. The operating orthopedic surgeon should determine the fixation method after evaluating imaging, fracture characteristics, bone quality, soft-tissue condition, and other relevant clinical factors.
Proper plate positioning and screw trajectory are essential for safe fixation. The surgical team should use compatible instrumentation and follow the manufacturer’s recommended drilling, screw insertion, and locking procedures. Incorrectly selected components or screw trajectories may compromise fixation or create unwanted interaction with surrounding anatomical structures.
Implants should be protected from contamination, bending, scratching, and other physical damage before implantation. Sterility and processing requirements depend on the specific product configuration and manufacturer labeling. Reusable instruments should be cleaned, inspected, packaged, and sterilized using validated healthcare-facility procedures.
With its dorsal distal radius T-plate configuration, variable-angle locking technology, 3–5 hole options, compatible screws, titanium construction, and 56-piece selection, this system provides a specialized orthopedic fixation option for appropriately selected distal radius fracture procedures.
Key Features
- Designed for dorsal distal radius fracture fixation.
- T-shaped plate configuration for specialized wrist fixation.
- Variable-angle locking technology allows flexible screw trajectories within the permitted range.
- Available in 3-, 4-, and 5-hole configurations.
- Supplied with compatible fixation screws.
- Manufactured from titanium.
- Designed for selected distal radius fracture patterns requiring dorsal fixation.
- Variable-angle screw positioning provides flexibility in fixation planning.
- Multiple plate configurations accommodate different fixation requirements.
- Supplied as a 56-piece selection.
- Suitable for professional orthopedic trauma and wrist surgery applications.
- Requires compatible drilling and screw insertion instrumentation.
Product Specifications
| Specification | Details |
|---|---|
| Product Name | Dorsal Distal Radius Variable Angle T-Plate |
| Anatomical Site | Distal Radius / Wrist |
| Plate Position | Dorsal |
| Plate Design | T-Plate |
| Locking Technology | Variable Angle Locking |
| Hole Options | 3–5 Holes |
| Screws | Included |
| Material | Titanium |
| Quantity | 56 Pieces |
| Fixation Type | Variable-Angle Locking Plate Fixation |
| Application | Distal Radius Fracture Fixation |
| Surgical Specialty | Orthopedic Trauma |
| Intended Use | Professional orthopedic surgical applications |
| Instrument Compatibility | Use compatible plating instrumentation |
| Sterilization | Follow product-specific manufacturer instructions and validated protocols |
FAQs
1. What is a Dorsal Distal Radius Variable Angle T-Plate?
It is an orthopedic fixation plate designed for selected distal radius fractures requiring dorsal fixation. Its T-shaped configuration provides a specialized platform for fracture stabilization, while variable-angle locking technology allows flexible compatible screw positioning.
2. What does variable-angle locking mean?
Variable-angle locking allows compatible screws to engage the plate at different permitted trajectories while maintaining a locking relationship between the screw head and plate. The permitted angular range depends on the specific implant system.
3. What hole configurations are available?
The product includes 3-, 4-, and 5-hole configurations, providing different options for plate length and screw distribution.
4. Are screws included with the T-plate?
Yes. The product title specifies that screws are included with the plate selection. Exact screw dimensions and quantities should be confirmed against the manufacturer’s detailed specifications.
5. What material is the dorsal distal radius plate made from?
The plate is manufactured from titanium, a material widely used in orthopedic implants because of its favorable strength-to-weight characteristics, corrosion resistance, and biocompatibility.
6. What is a dorsal distal radius plate used for?
A dorsal distal radius plate is used for fixation of appropriately selected distal radius fractures where a dorsal surgical approach and dorsal plate stabilization are clinically indicated.
7. What is the advantage of a T-shaped plate?
The T-shaped configuration provides a specialized plate geometry for fixation around the distal radius. It can provide multiple fixation points in a compact configuration suitable for selected fracture patterns.
8. How many pieces are included in this set?
The product is supplied as a 56-piece selection, consisting of the specified T-plates and associated screws.
9. Can the variable-angle plate be used with any locking screw?
No. Only compatible variable-angle locking screws specified for the corresponding plate system should be used. Screw diameter, head design, thread configuration, and permitted trajectory must be confirmed before use.
10. What fractures can this plate be used for?
It may be considered for appropriately selected distal radius fractures where dorsal fixation is clinically indicated. Final implant selection depends on fracture morphology, patient anatomy, bone quality, and the orthopedic surgeon’s treatment plan.

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