Spinal Internal Fixation System (Iliac)

The Spinal Internal Fixation System (Iliac) is composed of screws (including iliac screws and sacroiliac union screws), straight rods, and setscrews. All components are fabricated from TC4ELI titanium alloy that conforms to the requirements specified in GB/T 13810. Specifically, the surfaces of the locking screws and washers of the screw assembly are treated with a black-gray anodized finish; the surfaces of the screw sleeves are subject to a colored anodized finish; and the surfaces of the pressure pads, setscrews and straight rods are without anodized treatment. The product is available in both sterilized and non-sterilized packaging, with the sterilized version undergoing radiation sterilization and having a sterile shelf life of 5 years.

Scope of Application

For posterior spinal fixation of the thoracic, lumbar, and sacral vertebrae in adults.

Product Features

★ The system features an upper opening and lateral connection, facilitating surgical manipulation.

★ It enables direct connection between screws and rods without the need for lateral connectors, significantly reducing the profile.

★ The hollow screw design accommodates both minimally invasive and open surgeries.

★ The smooth shank design of the partially threaded screws reduces the invasion of threads into the sacroiliac joint.

★It is compatible with 5.5/6.0 systems, allowing for universal instruments and reducing instrument costs.

Product Advantages

• Midline approach: Reduces soft tissue injury, lowers postoperative incision complications, infection, and bleeding, and facilitates preserving the intact muscular fascial layer during incision closure.

• Screw entry point: Eliminates the need for damaging the posterior superior iliac spine, reducing postoperative pain (15mm below the posterior superior iliac spine, with a profile significantly lower than that of traditional methods).

• Raw material selection with non-toxicity to the human body and superior biological effects: Titanium material with excellent biocompatibility provides an outstanding bone fusion rate.

• Coaxial structure: No longer requires special connecting devices, facilitates pelvic orthopedics, and conforms to the concept of biomechanical stability.

Address

No. 10, Xinmixi 2nd Road, South Area of Tongzhou Economic

Development Zone, Tongzhou District, Beijing City, P.R. China

Contact Number

010-80561677

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hr@clzd.com

International Email

feedback@clzd.com

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