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Product Description
K-Wires Single Trocar 2 1/2" are precision-sharpened Kirschner wires designed for controlled fixation in delicate anatomical regions. Featuring a single trocar point and a compact 2.5-inch length, these smooth stainless-steel wires are ideal for short-distance bone stabilization, fragment alignment, and use as guide wires in highly confined surgical spaces.
The K-Wires Single Trocar 2 1/2" are carefully designed from implant-grade stainless steel, providing strength, smoothness, and precise insertion characteristics. Their single-beveled trocar tip enables clean cutting with minimal trauma, making them ideal for orthopedic and specific oral and maxillofacial procedures that require limited wire length. These wires are primarily used for fixing small bone fragments, as a guide for implant placement, and for stabilizing in complex anatomical sites. Made in the USA to stringent quality standards, each wire is thoroughly inspected to ensure consistent performance.
Applications
• Pediatric maxillofacial fracture stabilization
• Stabilization during palatal expansion procedures
• Fixation of small bone fragments in the hand, wrist, or foot
• Temporary guide pin placement in narrow surgical corridors
• Delicate bone alignment in temporomandibular joint (TMJ) surgeries
• Intricate fixation in multi-fragment phalangeal or metacarpal fractures
Key Anatomical Features
• Designed for small-bone orthopedic and dental applications
• High-grade stainless-steel core offers rigidity and biocompatibility
• Rounded cross-section supports rotational control during insertion
• Short 2.5-inch length suits small bone zones and limited-access surgeries
• Single trocar point allows precise, clean entry through soft and hard tissues
• Smooth shaft reduces soft tissue trauma and promotes accurate positioning
K-Wires Single Trocar 2 1/2" offer optimal performance in precision-guided surgeries involving small or fragile bone structures. Their compact design and surgical sharpness make them indispensable in both orthopedic and craniofacial procedures requiring minimal hardware footprint.