The Micro Kerrison Rongeur 8″ 3mm 40° Down Stainless Steel is a precision-engineered instrument designed for delicate bone removal and controlled tissue manipulation during neurosurgery and spinal surgery procedures. Developed for surgeons requiring exceptional accuracy and dependable performance, this micro Kerrison rongeur combines a specialized angled jaw design, fine cutting capability, and durable stainless steel construction to support complex surgical techniques.
Featuring an 8-inch (200mm) length, this Kerrison Rongeur provides an ideal balance between surgical reach, maneuverability, and tactile feedback. The micro-profile design allows surgeons to work effectively within narrow anatomical spaces while maintaining excellent visualization and control. Its compact construction supports precise movements during procedures where accuracy and minimal tissue disturbance are essential.
The 3mm jaw size is designed for fine and controlled bone removal, making it particularly suitable for microsurgical applications. This smaller bite capacity allows surgeons to remove small bone fragments and tissue sections with precision while maintaining control over each cutting action. The precision-machined jaws provide smooth operation and consistent performance during delicate spinal and neurosurgical procedures.
The 40° downward angled jaw configuration enhances accessibility by allowing surgeons to approach targeted surgical areas from an optimized angle. This design is beneficial when working around complex anatomical structures where standard straight instruments may not provide adequate positioning. The downward-facing tip helps improve instrument placement and supports controlled removal of bone during decompression and other specialized procedures.
Manufactured from high-quality surgical-grade stainless steel, this Micro Kerrison Rongeur provides excellent strength, corrosion resistance, and long-term durability. The stainless steel construction allows the instrument to withstand repeated cleaning and sterilization cycles while maintaining reliable mechanical performance. Its smooth finish supports effective cleaning and helps meet professional surgical instrument maintenance standards.
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 spinal decompression, laminectomy, laminotomy, and removal of small bone structures during advanced surgical interventions. The combination of a 3mm bite size and 40° downward angle makes it a valuable instrument for controlled and accurate surgical work.
The ergonomic handle design supports comfortable use during extended procedures. The balanced construction allows smooth opening and closing action, helping surgeons maintain precise control while reducing hand fatigue. This improves workflow efficiency and supports consistent performance throughout complex operations.
Designed for repeated professional use, this stainless steel Kerrison Rongeur is compatible with standard hospital sterilization protocols. Proper cleaning, inspection, and maintenance help preserve the instrument’s functionality, jaw alignment, and overall service life.
The Neurosurgery Surgical Kerrison Rongeur, Micro, 8″ (200mm) 3mm, 40° Down — Stainless Steel combines precision manufacturing, durable materials, and specialized jaw geometry to meet the requirements of modern neurosurgical and spinal procedures. It is an essential instrument for surgeons seeking reliable performance, accurate bone removal, and enhanced access during delicate surgical applications.
Key Features
- Micro Kerrison Rongeur designed for neurosurgery and spinal procedures
- 8″ (200mm) length provides excellent surgical access and control
- 3mm jaw size enables precise removal of small bone sections
- 40° downward angled tip improves access to specific surgical areas
- Manufactured from premium surgical-grade stainless steel
- Provides excellent corrosion resistance and long-lasting durability
- Precision-machined jaws ensure smooth and accurate cutting action
- Micro design supports delicate microsurgical techniques
- Ergonomic handle enhances comfort and instrument handling
- Suitable for laminectomy, laminotomy, and spinal decompression procedures
- Reusable construction supports standard sterilization methods
- Designed for professional operating room performance
Product Specifications
| Specification | Details |
|---|---|
| Product Name | Neurosurgery Surgical Kerrison Rongeur, Micro, 8″ (200mm) 3mm, 40° Down — Stainless Steel |
| Instrument Type | Micro Kerrison Rongeur |
| Specialty | Neurosurgery / Spine Surgery |
| Overall Length | 8″ (200mm) |
| Jaw Size | 3mm |
| Jaw Direction | 40° Down |
| Material | Surgical Grade Stainless Steel |
| Finish | Stainless Steel Finish |
| Application | Precision bone and tissue removal |
| Design | Micro angled jaw design |
| Usage | Reusable surgical instrument |
| Sterilization | Compatible with standard surgical sterilization procedures |
FAQs
1. What is a Micro Kerrison Rongeur used for?
A Micro Kerrison Rongeur is used for precise bone and tissue removal during neurosurgical and spinal procedures requiring controlled surgical access.
2. What is the advantage of a 40° Down Kerrison Rongeur?
The 40° downward angled jaw allows surgeons to approach specific anatomical areas with improved positioning, visibility, and control.
3. Why is a 3mm jaw size suitable for microsurgical procedures?
A 3mm bite size provides fine cutting control, making it ideal for delicate bone removal where precision is required.
4. What material is used in this Kerrison Rongeur?
This instrument is manufactured from surgical-grade stainless steel, providing durability, corrosion resistance, and repeated sterilization capability.
5. Is this Micro Kerrison Rongeur reusable?
Yes, it is designed for repeated surgical use and can be cleaned and sterilized using standard hospital instrument processing methods.
6. Which procedures commonly use a 40° Down Kerrison Rongeur?
It is commonly used in spinal decompression, laminectomy, laminotomy, and other neurosurgical procedures requiring precise bone removal.

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