The Neurosurgery MIS Retractor Tray | IVD Rongeurs (Part of 73-2930) is a comprehensive surgical instrument set developed to support minimally invasive spine (MIS) and neurosurgical procedures requiring precise intervertebral disc (IVD) tissue removal. Designed for use with modern minimally invasive retractor systems, this tray provides surgeons with high-quality IVD rongeurs that deliver exceptional control, precision, and access within restricted surgical corridors.
During minimally invasive spinal surgery, maintaining clear visualization while preserving surrounding anatomical structures is essential. The IVD rongeurs included in this tray are specifically engineered to facilitate the safe removal of disc material, fibrous tissue, and soft tissue from the intervertebral space. Their finely crafted jaws allow surgeons to perform controlled tissue excision with minimal trauma to adjacent neural structures, supporting safer and more efficient surgical outcomes.
Manufactured from premium surgical-grade stainless steel, every instrument within the Neurosurgery MIS Retractor Tray | IVD Rongeurs (Part of 73-2930) is designed to withstand the demanding conditions of repeated operating room use. The corrosion-resistant construction provides long-term durability while maintaining cutting performance, jaw alignment, and structural integrity after repeated sterilization cycles.
The ergonomic design of the IVD rongeurs enhances surgeon comfort during lengthy procedures. Balanced handles provide excellent grip and tactile feedback, allowing precise manipulation even within narrow operative fields. This ergonomic performance helps reduce hand fatigue and improves instrument control throughout delicate spinal decompression and discectomy procedures.
This specialized tray is suitable for a wide range of neurosurgical and spinal interventions, including lumbar microdiscectomy, cervical discectomy, thoracic spine surgery, spinal decompression, minimally invasive decompression procedures, and other operations involving intervertebral disc excision. The organized tray configuration allows surgical teams to quickly identify, access, and manage instruments, improving workflow efficiency in the operating theatre.
Each instrument is manufactured to meet the demanding standards expected by neurosurgeons, orthopedic spine surgeons, hospitals, ambulatory surgical centers, and specialty spine clinics. The precision-machined jaws ensure accurate tissue engagement while minimizing unnecessary trauma to healthy anatomical structures. This contributes to improved surgical precision and supports minimally invasive techniques aimed at reducing patient recovery time.
The tray is fully compatible with standard hospital sterilization protocols, including steam autoclave sterilization. The high-quality stainless steel construction maintains its surface finish and mechanical performance through repeated cleaning and sterilization, making it a dependable long-term investment for healthcare facilities.
Whether used as part of a complete minimally invasive spine instrument system or as a replacement component for the 73-2930 surgical set, the Neurosurgery MIS Retractor Tray | IVD Rongeurs (Part of 73-2930) offers dependable performance, exceptional durability, and the precision required for advanced neurosurgical procedures. Its combination of superior craftsmanship, ergonomic handling, and reliable cutting performance makes it an essential addition to modern spinal surgery instrument collections.
Key Features
- Designed specifically for minimally invasive spine (MIS) procedures
- Includes precision IVD rongeurs for intervertebral disc tissue removal
- Part of the 73-2930 Neurosurgery MIS Retractor System
- Manufactured from premium surgical-grade stainless steel
- Precision-machined jaws for controlled tissue excision
- Ergonomic handles enhance comfort and instrument control
- Excellent tactile feedback during delicate spinal procedures
- Corrosion-resistant finish for extended service life
- Fully reusable and autoclavable
- Suitable for hospitals, spine centers, and neurosurgical operating rooms
- Designed for repeated sterilization without loss of performance
- Supports efficient surgical workflow through organized tray configuration
Product Specifications
| Specification | Details |
|---|---|
| Product Name | Neurosurgery MIS Retractor Tray | IVD Rongeurs (Part of 73-2930) |
| Specialty | Neurosurgery |
| Surgical Field | Spine Surgery |
| Instrument Type | MIS Retractor Tray with IVD Rongeurs |
| Application | Intervertebral Disc Tissue Removal |
| Procedures | Microdiscectomy, Discectomy, Spinal Decompression, MIS Spine Surgery |
| Material | Premium Surgical Grade Stainless Steel |
| Finish | Satin / Matte Finish |
| Reusable | Yes |
| Sterilization | Steam Autoclave Compatible |
| Corrosion Resistant | Yes |
| Latex Free | Yes |
| Operating Room Use | Yes |
FAQs
1. What is the Neurosurgery MIS Retractor Tray | IVD Rongeurs used for?
It is designed for minimally invasive spinal and neurosurgical procedures where controlled removal of intervertebral disc tissue is required during discectomy and spinal decompression surgeries.
2. Which surgical specialties commonly use this instrument tray?
The tray is primarily used by neurosurgeons and orthopedic spine surgeons performing minimally invasive spinal procedures.
3. What material are the IVD rongeurs manufactured from?
The instruments are manufactured from high-quality surgical-grade stainless steel, providing excellent durability, corrosion resistance, and long service life.
4. Can the Neurosurgery MIS Retractor Tray be sterilized and reused?
Yes. The tray and all included instruments are fully reusable and compatible with standard steam autoclave sterilization protocols used in hospitals and surgical centers.
5. What are the benefits of using IVD rongeurs in minimally invasive spine surgery?
IVD rongeurs allow surgeons to precisely remove disc material while preserving surrounding anatomical structures. Their controlled cutting action improves surgical accuracy, enhances visibility within confined operative spaces, and supports minimally invasive surgical techniques.

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