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Locking One Third Tubular Plate 3.5mm LCP Set
Locking One Third Tubular Plates 3.5mm Titanium
The Locking One-Third Tubular Plates 3.5 mm (4–12 Holes) with LCP Screws – Titanium Grade 5, 90 pcs is a versatile orthopedic fixation system for selected fracture stabilization procedures. It combines multiple plate-hole configurations with compatible LCP screws and Titanium Grade 5 construction for professional orthopedic applications.
Locking One-Third 3.5 mm Plates (4–12 Holes) & LCP Screws – Titanium Grade 5 (61 pcs)
Locking Pliers with Slaphammer Heavy Duty 8″
The Locking Pliers with Slaphammer Heavy Duty 8″ is a specialized orthopedic surgical instrument designed for secure gripping and controlled extraction during implant removal procedures. Featuring a heavy-duty locking mechanism and integrated slaphammer, it provides strong holding force, precision control, and reliable performance in orthopedic and trauma surgeries.
Locking Proximal Femur Plate (3–13 Holes, L & R) with LCP Screws – 144 Pcs (Stainless Steel 316L)
Locking Proximal Femur Plate (3,5,7,9,11,13 Holes) L&R with Screws – Stainless Steel 316L
Locking Proximal Femur Plate (4,6,8,10,12 Holes) L&R with Screws – Stainless Steel 316L
Locking Proximal Humeral PHILOS Plates SS 316L
The Locking Proximal Humeral Multi-Angle (PHILOS) Plates are designed for fixation of appropriately selected proximal humerus fractures using compatible LCP locking screws. Available in 3, 5, 7, 9, and 11-hole configurations and manufactured from SS 316L, the system provides versatile fixation options for orthopedic trauma procedures.
Locking Proximal Medial Tibia Plate 3.5mm SS 316L
Locking Proximal Medial Tibia Plates 3.5mm Titanium 57 Pcs
The Locking Proximal Medial Tibia Plates (4, 6, 8, 10, 12 Holes) with 3.5 mm Screws – 57 pcs, Titanium (TT) is an orthopedic fixation system designed for selected proximal medial tibia fracture procedures. The system provides multiple plate configurations with compatible 3.5 mm screws and Titanium (TT) construction for professional orthopedic applications.