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Synthes

Synthes 207.750 4.0mm Cannulated Screw Long Thread 50mm

Regular price $103.50
Regular price Sale price $103.50
Sale

Synthes 207.750 4.0mm Cannulated Screw Long Thread 50mm

• Model: 207.750
• Diameter: 4.0mm
• Overall Length: 50mm

This medical supply or implant item is securely packaged within its original manufacturer's packaging, which remains undamaged. The inner and outer packaging is intact, ensuring the product's integrity and suitability for medical use.

The Synthes 207.750 is a finely engineered 4.0 mm cannulated screw, precision-crafted with a long-thread design extending well over half its 50 mm length. This configuration ensures enhanced purchase and stability—especially valuable when anchoring in small bone fragments or regions where strong cortical grip is necessary. The 1.35 mm cannulation allows it to be guided over a K-wire or guide wire, enabling minimally invasive, image‑guided placement for accurate and controlled insertion.

Constructed from high-grade stainless steel, the 207.750 balances corrosion resistance and mechanical strength with biocompatibility. The self-drilling, self-tapping tip streamlines the surgical workflow by eliminating the need for pre-drilling or tapping—minimizing procedural steps and reducing instrumentation needs. The small hexagonal socket head supports robust driver engagement and precise torque application, while the integrated 2 mm depth markings offer real-time visual feedback during insertion, aiding in accurate depth control.

Clinically, the Synthes 207.750 is highly suited for applications requiring reliable fixation in delicate anatomical areas—such as hand, wrist, or small bone osteotomies—where both precision and stability are critical. Its design integrates smoothly with Synthes cannulated screw systems, including corresponding guide wires, drivers, and drill bits, ensuring operability within established surgical protocols. Surgeons benefit from its enhanced purchase, dependable self‑tapping action, and insertion guidance features, making the 207.750 an excellent choice for securing small fragments without compromising surgical efficiency.


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