The Micro Kerrison Rongeur 9″ 1mm 40° Up SuperCoat is a specialised precision instrument developed for highly delicate bone removal and decompression procedures in neurosurgery and spine surgery. Designed for surgeons requiring maximum control and accuracy, this Micro Kerrison Rongeur provides refined handling, excellent access, and consistent performance when operating near sensitive neurological structures.
Kerrison Rongeurs are essential surgical instruments used in neurosurgical procedures for removing small sections of bone, trimming lamina, and creating additional space around compressed neural elements. The 9-inch (225mm) length offers a practical combination of reach and manoeuvrability, allowing surgeons to access targeted areas while maintaining stable control and precise instrument positioning.
The 40° upward angled jaw design improves surgical access and visibility by allowing the instrument to approach the operative area from an effective working angle. This angled configuration supports controlled biting action in narrow surgical fields where precision is critical. The upward-facing jaw design is especially suitable for procedures such as laminectomy, laminotomy, spinal decompression, cervical decompression, and other advanced neurosurgical applications.
The 1mm micro jaw size is engineered for ultra-fine bone removal where exceptional precision is required. The narrow biting surface allows surgeons to remove minimal amounts of bone with excellent control while helping preserve surrounding anatomical structures. This fine jaw configuration is ideal for microsurgical procedures involving delicate neural tissues and areas requiring careful manipulation.
The SuperCoat surface finish provides enhanced performance characteristics for modern operating environments. The specialised coating helps minimise reflections and glare from surgical lights and microscopes, supporting improved visual comfort during high-precision procedures. It also provides additional surface protection, helping improve resistance to wear and maintaining reliable instrument performance through repeated surgical use.
Manufactured from premium surgical-grade stainless steel, this Micro Kerrison Rongeur SuperCoat delivers outstanding durability, corrosion resistance, and mechanical reliability. The strong construction supports repeated cleaning and sterilisation cycles while maintaining precise jaw alignment, smooth opening and closing movement, and consistent cutting performance.
The ergonomic handle design enhances surgeon comfort and control throughout surgical procedures. Its balanced structure allows smooth operation and precise application of force while reducing hand fatigue during longer operations. Precision-machined components ensure dependable performance and accurate bone removal with each use.
This Neurosurgery Kerrison Rongeur, Micro, 9″ (225mm) 1mm, 40° Up SuperCoat is suitable for hospitals, neurosurgical departments, spine surgery centres, and specialised operating rooms requiring advanced reusable surgical instruments. It can be incorporated into neurosurgery trays, spinal decompression sets, and microsurgical instrument collections.
Combining micro-level precision, SuperCoat technology, ergonomic functionality, and durable surgical construction, this Kerrison Rongeur provides a reliable solution for complex neurological and spinal procedures. Its professional design supports surgical accuracy, efficiency, and consistent performance in demanding operating room environments.
Key Features
- Precision Micro Kerrison Rongeur designed for neurosurgery and spine surgery
- 9″ (225mm) length provides balanced reach and excellent control
- Ultra-fine 1mm jaw enables highly precise bone removal
- 40° upward angled jaw improves access and surgical visibility
- SuperCoat finish helps reduce glare from surgical lighting and microscopes
- Enhanced surface durability for repeated surgical applications
- Manufactured from premium surgical-grade stainless steel
- Suitable for laminectomy, laminotomy, and spinal decompression procedures
- Micro profile supports delicate neurological applications
- Ergonomic handle improves surgeon comfort and control
- Precision-machined jaws provide smooth and accurate operation
- Reusable design supports repeated sterilisation cycles
Product Specifications Table
| Specification | Details |
|---|---|
| Product Name | Neurosurgery Kerrison Rongeur, Micro |
| Instrument Type | Micro Kerrison Bone Rongeur |
| Coating | SuperCoat |
| Specialty | Neurosurgery / Spine Surgery |
| Length | 9″ (225mm) |
| Jaw Size | 1mm |
| Jaw Direction | 40° Up |
| Material | Surgical Stainless Steel |
| Surface Finish | SuperCoat Coated Finish |
| Application | Bone removal, spinal decompression, microsurgery |
| Reusable | Yes |
| Sterilisation Method | Autoclave Compatible |
| Usage | Professional Surgical Procedures |
FAQs
1. What is a Micro Kerrison Rongeur SuperCoat used for?
A Micro Kerrison Rongeur SuperCoat is used for precise bone removal, trimming, and decompression procedures in neurosurgery and spine surgery requiring maximum accuracy.
2. What is the advantage of a 1mm Kerrison Rongeur jaw?
The 1mm jaw provides ultra-fine precision, allowing surgeons to remove very small sections of bone while maintaining excellent control around delicate neurological structures.
3. Why does this Kerrison Rongeur have a 40° upward angle?
The 40° upward angle improves surgical access and visibility, allowing surgeons to work effectively in confined operative spaces.
4. How does SuperCoat benefit this neurosurgical instrument?
SuperCoat helps reduce glare, improves surface protection, and supports durability during repeated surgical procedures.
5. What procedures commonly use this Micro Kerrison Rongeur?
This instrument is commonly used for spinal decompression, laminectomy, laminotomy, cervical procedures, and other neurosurgical bone removal applications.
6. Is this SuperCoat Kerrison Rongeur reusable?
Yes, it is manufactured from durable surgical materials and designed for repeated cleaning and sterilisation in professional healthcare facilities.

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