Smith & Nephew Richards 122128 Russell-Taylor Femoral Locking Nail 12mm x 34cm BX/1
Smith & Nephew Richards 122128 Russell-Taylor Femoral Locking Nail 12mm x 34cm BX/1 is backordered and will ship as soon as it is back in stock.
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Smith & Nephew Richards 122128 Russell-Taylor Femoral Locking Nail 12mm x 34cm BX/1
• Model: 122128
• Diameter: 12 mm
• Length: 34 cm
• Material: Stainless Steel
The Smith & Nephew Richards Russell-Taylor Femoral Locking Nail 12 mm × 34 cm (BX/1) is a precision-engineered orthopedic intramedullary fixation device designed to deliver exceptional stability in the treatment of femoral shaft and subtrochanteric fractures. Its 12 mm diameter and 34 cm length provide optimal load distribution and robust biomechanical support, making it ideal for managing complex femoral fracture patterns that demand reliable axial and rotational control. As part of the renowned Russell-Taylor nail family, this locking nail is trusted by orthopedic surgeons for dependable performance in high-energy trauma and reconstruction cases.
Crafted from biocompatible, surgical-grade materials and supplied sterile for single-use implantation, this femoral locking nail features a cannulated design that facilitates guidewire-assisted insertion and precise placement within the femoral canal. Strategically placed proximal and distal interlocking holes accept standard locking screws, helping surgeons achieve secure interfragmentary fixation and controlled compression at the fracture site. This combination of design elements supports efficient surgical workflow and strong mechanical stability, which are critical for successful bone healing.
Ideal for trauma centers, orthopedic specialty hospitals, and surgical facilities addressing a full spectrum of femoral fractures, the Smith & Nephew Russell-Taylor Femoral Locking Nail 12 mm × 34 cm stands out as a high-performance solution for internal fixation. Whether treating diaphyseal breaks or managing subtrochanteric injuries, this intramedullary nail delivers the advanced structural integrity and dependable fixation that surgeons rely on to achieve positive patient outcomes in modern orthopedic fracture care.
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