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Code | Product Name | Specfication |
6404.0001 | Posterior Cervical Screw System Laminar Hook | / |
Key Features and Benefits of Posterior Cervical Screw System Laminar Hook
Posterior Cervical Screw System Laminar Hook is a specialized spinal implant designed to provide exceptional structural support and stability to the posterior cervical spine. This innovative system incorporates a unique laminar hook design, offering a range of benefits, including:
Indications for Posterior Cervical Screw System Laminar Hook
Posterior Cervical Screw System Laminar Hook is a specialized spinal implant designed to provide structural support and stability to the posterior cervical spine. It is indicated for patients who:
How Does The Posterior Cervical Screw System Laminar Hook Work
Posterior Cervical Screw System Laminar Hook is a specialized spinal implant designed to provide exceptional structural support and stability to the posterior cervical spine. The system typically consists of screws, rods, and a unique laminar hook component.
During surgery, the surgeon makes an incision in the back of the neck and accesses the cervical spine. The screws are inserted into the pedicles of the vertebrae, which are bony projections on the sides of the vertebrae. The screws are then connected to rods, providing additional stability and alignment.
The distinctive feature of this system is the laminar hook, which is attached to the screws and engages with the lamina, a bony arch that protects the spinal cord. This laminar hook provides enhanced fixation and stability, reducing the risk of implant loosening and failure.
The screws and rods work together to stabilize the cervical spine, reducing pain, improving neck mobility, and preventing further neurological damage. Posterior Cervical Screw System Laminar Hook offers a reliable and effective solution for patients with cervical spine conditions, providing superior spinal stabilization and enhanced quality of life.
FAQ
Q1: What is Posterior Cervical Screw System Laminar Hook?
A: Posterior Cervical Screw System Laminar Hook is a specialized spinal implant designed to provide exceptional structural support and stability to the posterior cervical spine.
Q2: What is the unique feature of the laminar hook design?
A: The laminar hook design provides additional fixation and stability by engaging with the lamina of the vertebrae.
Q3: What are the typical applications of Posterior Cervical Screw System Laminar Hook?
A: The system is used to treat conditions such as degenerative disc disease, fractures, and spinal instability in the cervical spine.
Q4: How does the laminar hook enhance spinal stabilization?
A: The laminar hook provides additional fixation, reducing the risk of implant loosening and failure, and ensuring optimal spinal stability.
Q5: What materials are the screws, rods, and laminar hook made of?
A: The components are typically made from durable and biocompatible materials, such as titanium or stainless steel.
Q6: What are the potential risks associated with Posterior Cervical Screw System Laminar Hook surgery?
A: As with any surgical procedure, there are potential risks such as infection, bleeding, and nerve damage.
Q7: How long is the recovery process after Posterior Cervical Screw System Laminar Hook surgery?
A: Recovery time varies depending on individual factors, but it typically takes several weeks to months.
Q8: Can I return to normal activities after Posterior Cervical Screw System Laminar Hook surgery?
A: Most patients can gradually return to normal activities after a period of recovery. However, strenuous activities may be limited.
Q9: How long does Posterior Cervical Screw System Laminar Hook typically last?
A: The lifespan of the implant can vary, but many patients experience long-term relief from their symptoms.
Q10: How does Posterior Cervical Screw System Laminar Hook compare to other cervical spinal implants?
A: The laminar hook design in Posterior Cervical Screw System Laminar Hook offers enhanced fixation and stability, making it a valuable option for patients seeking optimal outcomes. It may be particularly beneficial for patients with complex cervical spine conditions or those requiring additional support.
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