The Neurosurgery Surgical 9½” Gregory GG Forceps (Standard, 1.5mm Tip) are high-quality microsurgical instruments engineered to provide surgeons with reliable control and precision during delicate neurosurgical procedures. Designed for accurate tissue handling, these forceps feature a standard Gregory GG configuration with 1.5mm fine tips, allowing for secure manipulation of soft tissues and anatomical structures while minimizing unnecessary trauma. Their extended length, ergonomic design, and durable construction make them suitable for demanding surgical applications where precision and reliability are essential.
With an overall length of 9½ inches, these forceps provide excellent access to deeper operative areas while maintaining superior balance and maneuverability. The extended design allows surgeons to work effectively in restricted surgical fields while preserving visibility and control. This makes them particularly useful in neurosurgery, spinal surgery, microsurgery, and other procedures where accurate instrument positioning is required.
The 1.5mm Gregory GG tips are carefully designed for controlled tissue grasping and manipulation. The fine tip profile enables surgeons to handle delicate structures with improved accuracy, while the Gregory GG jaw pattern provides a secure grip during surgical procedures. This combination allows for effective tissue stabilization, dissection assistance, and precise handling of anatomical structures without compromising surrounding tissues.
Manufactured from premium surgical-grade stainless steel, the Neurosurgery Surgical 9½” Gregory GG Forceps (Standard, 1.5mm Tip) deliver exceptional durability, corrosion resistance, and long-lasting clinical performance. The precision-machined construction ensures accurate jaw alignment and smooth operation even after repeated sterilization cycles. The robust stainless steel material supports dependable use in hospitals, surgical centers, and specialized operating environments.
The ergonomic handle design provides improved comfort and control during extended surgical procedures. Balanced weight distribution reduces hand fatigue while enhancing tactile feedback, allowing surgeons to perform delicate tissue manipulation with greater precision. The smooth opening and closing action supports controlled movements required for microsurgical and neurosurgical techniques.
These forceps are widely used in neurosurgery, microsurgery, spinal surgery, vascular procedures, peripheral nerve surgery, and reconstructive surgery. They are suitable for tissue grasping, microdissection support, soft tissue stabilization, and handling delicate anatomical structures during complex procedures. Their versatility makes them a valuable addition to professional neurosurgical instrument sets.
The satin finish helps reduce glare from operating room lighting while supporting efficient cleaning and maintenance. Designed for repeated clinical use, these forceps are compatible with steam autoclave sterilization and standard hospital sterilization protocols. Their corrosion-resistant construction helps maintain performance and appearance after multiple sterilization cycles.
Each Neurosurgery Surgical 9½” Gregory GG Forceps (Standard, 1.5mm Tip) is manufactured according to strict quality standards to ensure reliable performance, precise alignment, and consistent functionality. Combining advanced surgical design, premium materials, and ergonomic handling, these forceps provide the accuracy and durability required by modern surgical professionals.
For neurosurgical procedures requiring dependable tissue control, precise manipulation, and extended operative reach, the Neurosurgery Surgical 9½” Gregory GG Forceps (Standard, 1.5mm Tip) offer a trusted solution for professional surgical environments.
Key Features
- Designed for precise tissue handling in neurosurgery and microsurgery
- 9½-inch length provides extended access to deep surgical fields
- Standard Gregory GG design for controlled tissue grasping
- Fine 1.5mm tips support delicate tissue manipulation
- Manufactured from premium surgical-grade stainless steel
- Precision-aligned jaws provide consistent gripping performance
- Ergonomic handle improves comfort during prolonged procedures
- Balanced construction enhances surgical control and accuracy
- Corrosion-resistant design supports long-term durability
- Satin finish reduces glare and simplifies cleaning
- Fully reusable and compatible with autoclave sterilization
- Suitable for neurosurgery, spinal surgery, microsurgery, and vascular procedures
Product Specifications
| Specification | Details |
|---|---|
| Product Name | Neurosurgery Surgical 9½” Gregory GG Forceps (Standard, 1.5mm Tip) |
| Instrument Type | Tissue Forceps |
| Overall Length | 9½ Inches |
| Tip Size | 1.5 mm |
| Tip Design | Gregory GG Standard Tips |
| Material | Premium Surgical Grade Stainless Steel |
| Finish | Satin Finish |
| Specialty | Neurosurgery |
| Applications | Tissue Grasping, Microsurgery, Fine Tissue Manipulation |
| Sterilization | Autoclave Sterilizable |
| Reusable | Yes |
| Corrosion Resistant | Yes |
| Latex Free | Yes |
FAQs
1. What are the Neurosurgery Surgical 9½” Gregory GG Forceps used for?
These forceps are used for precise tissue grasping and manipulation during neurosurgery, microsurgery, spinal surgery, and other delicate surgical procedures.
2. What is the benefit of the 1.5mm tip size?
The 1.5mm fine tips provide enhanced precision for handling delicate tissues while allowing controlled grasping during microsurgical procedures.
3. Why choose Gregory GG Forceps for neurosurgical applications?
Gregory GG Forceps are designed for reliable tissue control, precision handling, and smooth operation during procedures requiring accurate manipulation.
4. Can these forceps be sterilized and reused?
Yes. They are reusable surgical instruments designed to withstand repeated steam autoclave sterilization and hospital reprocessing procedures.
5. Which procedures commonly use these forceps?
They are commonly used in neurosurgery, microsurgery, spinal procedures, vascular surgery, peripheral nerve procedures, and other applications requiring precise tissue handling.

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