The Micro Kerrison Rongeur 10″ 4mm 40° Up SuperCoat is a specialised surgical instrument engineered for precise bone removal in neurosurgery and spinal surgery applications. Designed to meet the demanding requirements of modern operating rooms, this Micro Kerrison Rongeur provides surgeons with enhanced control, accurate biting performance, and improved access to difficult anatomical areas.
Kerrison Rongeurs are widely used in neurosurgical and spinal procedures where controlled removal of bone is necessary to relieve pressure on neural structures. This 10-inch (250mm) Micro Kerrison Rongeur offers an ideal combination of reach and manoeuvrability, allowing surgeons to perform delicate decompression procedures while maintaining excellent instrument stability and precision.
The 40° upward angled jaw design provides improved access and visibility during surgical procedures. This configuration allows the surgeon to approach the operative site from an optimal angle, especially when working in confined spaces around the spinal canal and neural elements. The upward-facing bite supports controlled removal of lamina, bone fragments, and other unwanted bone structures during procedures such as laminectomy, laminotomy, cervical decompression, and lumbar decompression.
The 4mm jaw size is designed to provide a balance between efficient bone removal and delicate surgical control. It enables surgeons to remove targeted bone sections accurately while reducing unnecessary manipulation of surrounding tissues. The micro design supports precise handling in procedures where accuracy and minimal disruption are essential.
The SuperCoat surface coating enhances the instrument’s performance by providing improved surface protection and durability. This specialised finish helps reduce glare from surgical lighting, supporting better visibility during procedures performed under operating microscopes or focused illumination. The coating also contributes to wear resistance, helping maintain the instrument’s appearance and functionality through repeated professional use.
Constructed from premium surgical-grade stainless steel, this Micro Kerrison Rongeur SuperCoat offers excellent strength, corrosion resistance, and long-term reliability. The high-quality stainless steel foundation allows the instrument to withstand repeated cleaning and sterilisation cycles while maintaining precise alignment, smooth mechanical operation, and consistent cutting performance.
The ergonomic handle design provides surgeons with comfortable grip and improved control during procedures. Its balanced construction allows precise force application while helping reduce hand fatigue during extended operations. Precision-engineered jaws ensure smooth opening and closing action, supporting accurate bone removal and efficient surgical workflow.
This Neurosurgery Kerrison Rongeur, Micro, 10″ (250mm) 4mm, 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 instrument sets, spinal decompression trays, and microsurgical collections.
Combining precision micro design, extended reach, SuperCoat technology, and surgical-grade durability, this Kerrison Rongeur provides a dependable solution for complex neurosurgical and spinal procedures. Its professional construction supports accuracy, efficiency, and consistent performance in demanding surgical environments.
Key Features
- Professional Micro Kerrison Rongeur designed for neurosurgery and spine procedures
- 10″ (250mm) length provides excellent reach with improved manoeuvrability
- 4mm biting jaw supports precise and controlled bone removal
- 40° upward angled jaw enhances surgical access and visibility
- SuperCoat finish improves surface durability and reduces light reflection
- Manufactured from high-quality surgical stainless steel
- Suitable for laminectomy, laminotomy, and spinal decompression procedures
- Micro profile supports delicate surgical applications
- Ergonomic handle improves surgeon comfort and control
- Precision-machined jaws provide smooth and reliable cutting action
- Reusable construction supports repeated sterilisation cycles
- Designed for professional neurosurgical operating environments
Product Specifications Table
| Specification | Details |
|---|---|
| Product Name | Neurosurgery Kerrison Rongeur, Micro |
| Coating | SuperCoat |
| Instrument Type | Micro Kerrison Bone Rongeur |
| Specialty | Neurosurgery / Spine Surgery |
| Length | 10″ (250mm) |
| Jaw Size | 4mm |
| Jaw Direction | 40° Up |
| Material | Surgical Stainless Steel |
| Surface Finish | SuperCoat Coating |
| Application | Bone removal, spinal decompression, laminectomy |
| 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 and decompression procedures in neurosurgery and spinal surgery, especially where controlled access is required.
2. What are the benefits of SuperCoat on a surgical instrument?
SuperCoat provides enhanced surface protection, helps reduce glare from surgical lighting, and supports long-term durability during repeated professional use.
3. Why is this Kerrison Rongeur designed with a 40° up jaw?
The 40° up jaw allows improved positioning and visibility, helping surgeons access difficult surgical areas with greater control and precision.
4. What procedures use a 4mm Kerrison Rongeur?
A 4mm Kerrison Rongeur is commonly used for spinal decompression, laminectomy, laminotomy, and other procedures requiring controlled bone removal.
5. Is this Micro Kerrison Rongeur reusable?
Yes, this instrument is manufactured from surgical stainless steel and designed for repeated cleaning and sterilisation in professional healthcare facilities.
6. Why is stainless steel used for neurosurgical Kerrison Rongeurs?
Surgical stainless steel provides excellent strength, corrosion resistance, durability, and reliable performance required for repeated surgical applications.

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