Large Fragment - Locked

High-Quality Locking Plates & Screws for Heavy Load-Bearing Long Bone Fractures | ISO 13485 & CE Certified Manufacturing

Comprehensive Large Fragment Locking Systems for Complex Trauma

Surgical management of long bone fractures demands uncompromised biomechanical stability, accurate anatomical alignment, and rapid restoration of vascularization. Sharma Orthopedic manufactures an internationally accredited range of Large Fragment Locking Plates and Screws engineered specifically for load-bearing skeletal structures, including the Femur, Tibia, and Humerus.

Combining fixed-angle locking screw technology with traditional dynamic compression plating principles, our large fragment locking system provides exceptional angular and torsional stability. This hybrid functionality minimizes the risk of implant failure, screw back-out, and loss of reduction—even in osteopenic bone, non-union revisions, and severe comminuted fractures.

Key Engineering Highlights

  • Medical-Grade Alloys: Premium Titanium (Ti-6Al-4V ELI) and Stainless Steel (316LVM) for ultimate biocompatibility.
  • Combi-Hole Technology: Allows intraoperative choice between dynamic compression and angular stable locking fixation.
  • Anatomical Contouring: Pre-shaped profiles reduce intraoperative bending and tissue irritation.
  • Reduced Periosteal Contact: Undersurface recesses preserve local blood supply for accelerated bone healing.
  • Global Regulatory Compliance: Manufactured under ISO 13485 quality systems with full CE compliance.

Clinical Indications & Biomechanical Advantages

Our large fragment locking implant portfolio is designed by orthopedic specialists and biomedical engineers to handle severe mechanical stresses across diverse anatomical sites.

Long Bone Fracture Fixation

Indicated for diaphyseal and metaphyseal fractures of the femur, tibia, and humerus, providing rigid internal fixation during primary bone healing.

Osteopenic & Porotic Bone

Threaded locking constructs act as internal fixators, distributing mechanical loads evenly without relying on plate-to-bone friction, critical for osteoporotic patients.

Comminuted & Complex Fractures

Ideal for multi-fragmentary fractures, bicondylar tibial plateau injuries, distal femoral fractures, and periprosthetic fracture management.

Non-Unions & Reconstructive Surgery

Provides robust angular stability required for malunion corrections, osteotomies, and revision trauma cases with pre-existing bone loss.

Large Fragment Locking Portfolio Range

We supply a full spectrum of anatomical locking plates and corresponding screws tailored to surgeon preferences and international healthcare standards.

Category Implant Description Material Options Size Range / Variations
Femoral Locking Plates Proximal Femur, Distal Femur, Trochanteric & Condylar Buttress Plates Titanium / Stainless Steel 316LVM 5 Hole to 16 Hole (Left & Right Anatomical)
Tibial Locking Plates Proximal Medial Tibia, Lateral Tibia Head, Distal Medial & Anatomical Distal Tibia Titanium / Stainless Steel 316LVM 4 Hole to 14 Hole (Left & Right Anatomical)
Specialized Anatomical Plates Cloverleaf Plates, T-Locked Plates, L-Locked Plates, Pilon & Low Bend Plates Titanium / Stainless Steel 316LVM Various Lengths & Configurations
Straight & Tubular Plates Dynamic Compression Locked Plates (Broad & Narrow), 1/3rd Tubular Locked Plates Titanium / Stainless Steel 316LVM 2 Hole to 18 Hole Options
Large Fragment Screws Cortex Locking Screws (3.5mm, 5.0mm) & Cancellous Locking Screws (4.0mm, 5.0mm, 6.5mm) Titanium / Stainless Steel 316LVM Fully Threaded, 16mm & 32mm Threaded Lengths
Surgical Instrumentation Complete Large Fragment Graphic Instrument Trays, Drill Bits, Guides & Containers Medical Stainless Steel / Aluminum Customized OEM & Standard Sets Available

Frequently Asked Questions for Global Procurement

Key information for hospital buyers, orthopedic distributors, and surgical teams regarding our large fragment locking systems.

1. What is the expected recovery timeline for surgeries utilizing large fragment locking plates?

Recovery depends on factors such as fracture pattern, bone quality, patient age, and surgeon protocols. Clinical union is typically achieved within 8 to 16 weeks for long bone trauma. The superior angular stability of locking constructs allows early mobilizations under expert medical supervision.

2. How do combi-holes function in large fragment locking compression plates?

Combi-holes feature a dual-geometry design. One half of the hole is threaded to accept locking screws for rigid fixed-angle stability, while the non-threaded half accepts standard cortex or cancellous screws for dynamic axial compression.

3. Are large fragment locking plates suitable for all bone fractures?

Large fragment systems (utilizing 4.5mm/5.0mm screw parameters) are engineered specifically for heavy load-bearing long bones (Femur, Tibia, Humerus). Smaller bones such as radius, ulna, hand, and foot structures require Small Fragment or Mini Fragment locking systems.

4. Do you offer OEM manufacturing and customized surgical instrument containers for international distributors?

Yes. Sharma Orthopedic specializes in complete OEM/ODM solutions, including custom branding, specialized anodization, bespoke tray layouts, and comprehensive regulatory documentation for quick market registration globally.

Partner with a Leading Global Orthopedic Manufacturer

We invite international medical distributors, hospital networks, and procurement agencies to request detailed technical catalogs, clinical data, and competitive factory-direct pricing.