The Micro Kerrison Rongeur 8″ 4mm 40° Down Stainless Steel is a precision-crafted neurosurgical instrument developed for controlled bone removal and delicate tissue manipulation in advanced spinal and cranial procedures. Designed for surgeons requiring exceptional accuracy and dependable performance, this micro Kerrison rongeur combines a fine working profile, angled jaw configuration, and durable stainless steel construction to support complex surgical techniques.
With an overall length of 8 inches (200mm), this Kerrison Rongeur provides an effective balance between accessibility, control, and maneuverability. The micro design allows surgeons to operate within confined anatomical spaces while maintaining excellent tactile feedback and visualization. Its compact structure makes it suitable for procedures where precise instrument positioning and controlled movements are essential.
The 4mm jaw size is designed for fine and controlled bone removal, making it ideal for microsurgical applications where accuracy is more important than larger cutting capacity. The precisely aligned jaws allow surgeons to remove small bone fragments and tissue sections with improved control, helping minimize unnecessary manipulation of surrounding anatomical structures.
The 40° downward angled jaw design provides enhanced access and flexibility during surgical procedures. This angled configuration allows surgeons to approach specific areas from a lower working angle, improving instrument placement and supporting efficient removal of bone during spinal decompression and other delicate neurosurgical applications. The downward-facing tip helps maintain better positioning when working around complex anatomical structures.
Constructed from high-quality surgical-grade stainless steel, this Micro Kerrison Rongeur delivers excellent strength, corrosion resistance, and long-lasting reliability. The stainless steel material is designed to withstand repeated sterilization cycles while maintaining structural integrity and consistent performance. Its smooth finish supports easy cleaning and helps meet the hygiene requirements of modern surgical environments.
This Neurosurgery Surgical Kerrison Rongeur is commonly used in neurosurgery, orthopedic spine surgery, and microsurgical procedures requiring precise bone removal. It is suitable for applications such as laminectomy, laminotomy, spinal decompression, and removal of small bone sections during complex surgical interventions. The combination of a 4mm bite size and 40° downward angle makes it a valuable instrument for procedures requiring refined control.
The ergonomic handle design enhances surgeon comfort and operational efficiency. Its balanced construction allows smooth opening and closing movements while reducing hand strain during extended procedures. Surgeons can maintain consistent control, accuracy, and confidence throughout delicate surgical tasks.
Designed for repeated clinical use, this stainless steel Kerrison Rongeur is compatible with standard hospital cleaning and sterilization protocols. Proper maintenance, including inspection, cleaning, and sterilization, helps preserve the instrument’s mechanical performance and extend its service life.
The Neurosurgery Surgical Kerrison Rongeur, Micro, 8″ (200mm) 4mm, 40° Down — Stainless Steel represents a combination of precision engineering, durable construction, and specialized surgical functionality. It is an essential instrument for neurosurgeons and spine specialists seeking reliable performance for delicate bone removal and decompression procedures.
Key Features
- Micro Kerrison Rongeur designed for neurosurgical and spinal applications
- 8″ (200mm) length provides excellent reach and instrument control
- 4mm jaw size enables precise removal of small bone sections
- 40° downward angled tip improves access in challenging surgical areas
- Manufactured from premium surgical-grade stainless steel
- Provides excellent durability and corrosion resistance
- Precision-machined jaws ensure accurate and consistent cutting action
- Micro profile supports delicate microsurgical procedures
- Ergonomic handle design improves comfort and handling precision
- Suitable for laminectomy, laminotomy, and spinal decompression
- Reusable design supports standard sterilization procedures
- Designed for professional operating room performance
Product Specifications
| Specification | Details |
|---|---|
| Product Name | Neurosurgery Surgical Kerrison Rongeur, Micro, 8″ (200mm) 4mm, 40° Down — Stainless Steel |
| Instrument Type | Micro Kerrison Rongeur |
| Specialty | Neurosurgery / Spine Surgery |
| Overall Length | 8″ (200mm) |
| Jaw Size | 4mm |
| Jaw Direction | 40° Down |
| Material | Surgical Grade Stainless Steel |
| Finish | Stainless Steel Finish |
| Application | Controlled bone and tissue removal |
| Design | Micro precision angled jaw design |
| Usage | Reusable surgical instrument |
| Sterilization | Compatible with standard surgical sterilization methods |
FAQs
1. What is a Micro Kerrison Rongeur used for in neurosurgery?
A Micro Kerrison Rongeur is used for precise removal of bone and tissue during spinal and neurosurgical procedures requiring controlled surgical access.
2. What is the advantage of a 4mm Kerrison Rongeur?
A 4mm jaw provides fine cutting control, making it suitable for delicate procedures where precise bone removal is required.
3. Why is the jaw angled 40° Down?
The 40° downward angle improves access and positioning in specific surgical areas while allowing surgeons to maintain better control.
4. What material is used to manufacture this Kerrison Rongeur?
This instrument is manufactured from surgical-grade stainless steel for strength, durability, corrosion resistance, and repeated sterilization capability.
5. Can this Micro Kerrison Rongeur be reused?
Yes, it is designed for repeated surgical use and can be cleaned and sterilized according to standard hospital protocols.
6. Which procedures commonly use this type of Kerrison Rongeur?
It is commonly used in spinal decompression, laminectomy, laminotomy, and other neurosurgical procedures requiring precise bone removal.

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