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Anterior Cruciate Ligament Interference Screw

Reference: 779755 Orthopedic Surgery
LigamentAnterior Cruciate Ligament, Posterior Cruciate Ligament
ResorbabilityAbsorbable
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Product summary

ActivaScrewâ„¢ Interference is a versatile instrument that can be employed for a variety of procedures, including bone fractures, osteotomies, arthrodesis, and bone grafts. Stable fixation and ossification are facilitated by the screw's strength. The screw employs the patented Self-Locking SLâ„¢ technology, which ensures stability. The diameter of the screw will slightly increase, thereby reducing the likelihood of an unstable fixation. input:
output:Advantages for the patient

ActivaScrewâ„¢ Interference provides patients with a variety of advantages. It is capable of attending interference fixation in a variety of body parts, including the knee, feet, elbow, shoulder, and hand. The risk of complications is reduced, and patient discomfort is alleviated, as only one operation is required with Bioretec's bioabsorbable products. Implants that are bioabsorbable also facilitate rehabilitation and prevent stress shielding.



Advantages of a professional

ActivaScrewâ„¢ Interference is a versatile multitool designed for medical professionals. In human conditions, the implant diameter expands by 1-2 percent due to the patented Self-Locking SLâ„¢ technology. This provides the surgeon with additional security when using grafts, as the screw forces the graft to adhere more tightly to the drill canal during the postoperative period, which lasts for a minimum of eight weeks. It can be inserted along the guide wire, which has a diameter of either 0.8mm or 1.6mm. The screw may be drilled through if necessary. The screw is composed of PLGA, which ensures that it does not interfere with MR scanning and will degrade naturally within two years.input:
output:High usability for a wide range of indications

A diverse array of sizes is available, ranging from a 4mm diameter to 11mm.

Simple insertion along the guide wire (K-wire)Isoelasticity; the bending modulus is more closely aligned with the value of cortical bone than that of metallic implants.

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