
3.9MM INTERLOCKING BOLTS
Product Details
Product Details: 3.9MM INTERLOCKING BOLTS
The 3.9 mm Interlocking Bolt is an orthopedic implant designed for trauma cases requiring precise and secure stabilization. Developed by Yogeshwar Implants, this bolt is engineered for use with interlocking nail systems, ensuring enhanced fracture fixation in long bones like the femur and tibia. Its durable stainless-steel construction, combined with a fully threaded and self-tapping design, simplifies surgical procedures while ensuring long-term performance.
Benefits:
- Enhanced Stability: Provides a strong and stable connection with interlocking nails to minimize micromotion and promote effective healing.
- High Durability: Made from premium stainless steel for robust performance in orthopedic trauma management.
- Precision Engineering: Fully threaded, self-tapping design ensures precise bone engagement and easy insertion.
- Versatility: Suitable for trauma cases involving long bones such as the femur, tibia, and humerus.
- Sterile Packaging: Delivered ready-to-use, ensuring contamination-free surgical procedures.
Technical Specifications:
- Diameter: 3.9 mm
- Material: Stainless steel
- Thread Type: Fully threaded, self-tapping for consistent and secure bone engagement.
- Compatibility: Designed for use with interlocking nail systems in orthopedic surgeries.
- Length Options: Available in multiple lengths to suit various anatomical needs and fracture patterns.
- Sterility: Supplied in sterile, individually packed pouches for safe handling during surgeries.
Applications:
- Ideal for stabilizing long bone fractures in trauma surgeries.
- Specifically designed for femur, tibia, and humerus fractures requiring interlocking nail fixation.
Ordering Information:
For detailed product codes, length options, or additional assistance, visit the Yogeshwar Implants website or contact their sales representative. The 3.9 mm Interlocking Bolt is a reliable choice for improving surgical outcomes in trauma cases, offering precision and stability.