The Foraminotomy Rongeur 8″ 5mm 40° Up Neurosurgery is a specialised neurosurgical instrument developed for precise bone removal and decompression procedures involving the spine and neural structures. Designed for professional neurosurgeons and spine specialists, this foraminotomy rongeur delivers controlled biting action, excellent manoeuvrability, and dependable performance during delicate surgical applications.
Featuring a 5mm working jaw with a curved upward 40° angle, this surgical rongeur allows surgeons to access challenging anatomical areas with improved positioning and visibility. The upward-curved jaw design provides an effective approach angle for removing bone fragments, osteophytes, and obstructive tissue around the neural foramina. This configuration supports accurate manipulation while helping maintain control near sensitive neurological structures.
The 8-inch (200mm) length provides an excellent balance between reach, stability, and precision. Its compact yet versatile design allows surgeons to perform controlled movements within the operative field while maintaining strong tactile feedback. This makes the instrument suitable for spinal procedures where accurate positioning and dependable handling are essential.
The 5mm jaw profile offers efficient bone removal capability while maintaining surgical accuracy. It is suitable for removing targeted bone material, laminar fragments, and tissue during procedures such as foraminotomy, spinal decompression, laminectomy, laminoplasty, and nerve root decompression. The jaw design allows effective removal while supporting careful surgical techniques around important anatomical structures.
The hinged micro handle enhances ergonomic functionality by providing smooth jaw activation and improved instrument control. The handle mechanism allows surgeons to perform precise bites with consistent pressure and reduced hand fatigue. The micro handle design is particularly beneficial during complex neurosurgical procedures where fine control and reliable response are required.
Manufactured from premium surgical-grade stainless steel, this neurosurgical foraminotomy rongeur provides exceptional durability, corrosion resistance, and long-term clinical reliability. The high-quality stainless steel construction allows repeated cleaning and sterilisation cycles while preserving the instrument’s strength, sharpness, and mechanical performance. The smooth polished finish supports efficient cleaning, inspection, and maintenance according to professional surgical standards.
This spinal surgery bone rongeur is designed for advanced operating room environments where precision and durability are critical. The curved up 40° jaw improves access to angled surgical locations, while the ergonomic hinged micro handle supports controlled manipulation during demanding procedures. It is an important addition to neurosurgical instrument sets, spine surgery trays, and specialised decompression collections.
The balanced construction of this surgical rongeur supports surgeon comfort and procedural efficiency. Its precision-engineered mechanism allows consistent jaw movement, while the durable stainless steel body ensures dependable performance through repeated professional use.
The Neurosurgery Surgical Foraminotomy Rongeur 8″ 5mm Curved Up 40° Up Hinged Micro Handle Stainless Steel combines advanced design, high-quality materials, and specialised surgical functionality. It provides surgeons with a reliable solution for controlled bone removal, improved surgical access, and accurate performance during complex spinal and neurosurgical procedures.
Key Features
- Professional 8″ (200mm) Neurosurgery Surgical Foraminotomy Rongeur
- 5mm jaw size for efficient bone and tissue removal
- Curved up 40° jaw improves access to difficult surgical areas
- Hinged micro handle provides smooth and precise operation
- Designed for foraminotomy and spinal decompression procedures
- Suitable for laminectomy, laminoplasty, and nerve root decompression
- Manufactured from premium surgical-grade stainless steel
- Provides controlled biting action near delicate neural structures
- Ergonomic micro handle improves surgeon comfort and handling
- Durable construction supports repeated sterilisation cycles
- Corrosion-resistant finish for long-term clinical performance
- Ideal for professional neurosurgical and spine instrument sets
Product Specifications Table
| Specification | Details |
|---|---|
| Product Name | Neurosurgery Surgical Foraminotomy Rongeur |
| Instrument Type | Surgical Bone Rongeur |
| Specialty | Neurosurgery / Spine Surgery |
| Overall Length | 8″ (200mm) |
| Jaw Size | 5mm |
| Jaw Design | Curved Up |
| Jaw Angle | 40° Up |
| Handle Type | Hinged Micro Handle |
| Material | Surgical Grade Stainless Steel |
| Application | Foraminotomy, Bone Removal, Spinal Decompression |
| Instrument Use | Reusable Surgical Instrument |
| Sterilisation Compatibility | Standard Surgical Sterilisation Methods |
FAQs
1. What is a Neurosurgery Surgical Foraminotomy Rongeur used for?
A Neurosurgery Surgical Foraminotomy Rongeur is used for controlled removal of bone and tissue during spinal decompression, foraminotomy, and nerve root decompression procedures.
2. What is the advantage of the 5mm jaw size?
The 5mm jaw provides efficient bone removal capacity while maintaining the precision required for neurosurgical applications.
3. Why is the 40° curved up jaw design beneficial?
The 40° curved up jaw allows improved access to angled and confined surgical areas while supporting accurate bone removal.
4. What is the purpose of the hinged micro handle?
The hinged micro handle provides smooth jaw movement, improved ergonomics, and better control during delicate surgical procedures.
5. Is this stainless steel foraminotomy rongeur reusable?
Yes, it is manufactured from surgical-grade stainless steel and designed for repeated cleaning and sterilisation cycles.
6. Which procedures commonly use this neurosurgical rongeur?
It is commonly used in foraminotomy, spinal decompression, laminectomy, laminoplasty, and other procedures requiring controlled bone removal near neural structures.

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