The Neurosurgery Surgical Noto Ovary & Polypus Forceps 10¾”, 17 mm Jaws is a precision-manufactured gynecological instrument designed for controlled tissue handling during ovarian, uterine, and polyp removal procedures. Developed for professional surgical environments, this specialized forceps provides surgeons with dependable grasping ability, accurate manipulation, and enhanced control when working with delicate pelvic tissues.
With an overall length of 10¾ inches (approximately 27.3 cm), the Noto Ovary & Polypus Forceps offers an effective balance between reach, maneuverability, and surgical precision. The extended length allows surgeons to access deeper areas of the operative field while maintaining comfortable handling and excellent tactile feedback. Its balanced construction supports smooth instrument movement during procedures requiring controlled tissue engagement.
The main feature of the Noto Ovary & Polypus Forceps 10¾” is its precisely designed 17 mm jaws, which provide an optimal grasping surface for handling ovarian tissue, polyps, and other soft tissues. The jaw dimensions allow controlled engagement while supporting accurate positioning during surgical manipulation. This makes the instrument suitable for procedures where precision and gentle tissue handling are essential.
The working jaws are engineered to provide a secure grip while allowing surgeons to maintain control over delicate anatomical structures. The instrument assists with tissue stabilization, grasping, and removal during gynecological procedures. Its carefully aligned jaws help ensure smooth operation and consistent performance throughout repeated clinical applications.
Manufactured from premium medical-grade stainless steel, the Neurosurgery Surgical Noto Ovary & Polypus Forceps 10¾”, 17 mm Jaws provides excellent durability, corrosion resistance, and long-term reliability. The high-quality stainless steel construction allows the instrument to withstand repeated cleaning, disinfection, and sterilization cycles while maintaining its precision and structural integrity. The smooth surface finish supports efficient cleaning and proper surgical instrument maintenance.
The ergonomic ring handle design provides surgeons with a secure and comfortable grip, improving control during delicate procedures. The balanced structure allows smooth opening and closing of the jaws while enhancing tactile response. This ergonomic advantage helps reduce hand fatigue and supports accurate manipulation during extended gynecological surgeries.
The Noto Ovary & Polypus Forceps 10¾” with 17 mm Jaws is commonly used in gynecological surgery for procedures involving ovarian tissue handling, endometrial polyp removal, uterine cavity procedures, and pelvic tissue manipulation. The instrument is designed to assist surgeons requiring precise grasping and controlled tissue management.
Although included within specialized surgical instrument categories, Noto Ovary & Polypus Forceps are primarily associated with gynecological surgery rather than neurosurgical procedures. Their specialized design, reliable tissue control, and durable construction make them valuable instruments for gynecologists performing diagnostic and therapeutic pelvic procedures.
Designed for repeated professional use, this reusable surgical instrument is compatible with standard sterilization protocols, including steam autoclaving. The corrosion-resistant stainless steel construction provides excellent resistance to wear and ensures dependable service life in hospitals, surgical centers, and gynecology departments.
The Neurosurgery Surgical Noto Ovary & Polypus Forceps 10¾”, 17 mm Jaws combines precision engineering, ergonomic handling, durable materials, and specialized gynecological functionality. Its reliable grasping capability and practical jaw design make it an essential instrument for surgeons requiring accuracy, stability, and efficiency during ovarian and polyp-related procedures.
Key Features
- Premium medical-grade stainless steel construction
- Overall length of 10¾ inches (27.3 cm)
- Precision 17 mm jaws for controlled tissue handling
- Designed for ovarian and polyp removal procedures
- Provides secure grasping and manipulation of tissues
- Suitable for delicate gynecological applications
- Ergonomic ring handle improves surgeon comfort
- Balanced design for enhanced surgical control
- Precision-aligned jaws ensure reliable performance
- Corrosion-resistant finish for long-term durability
- Fully reusable and autoclavable
- Suitable for professional operating rooms
Product Specifications
| Specification | Details |
|---|---|
| Product Name | Neurosurgery Surgical Noto Ovary & Polypus Forceps 10¾”, 17 mm Jaws |
| Instrument Type | Ovary & Polypus Forceps |
| Overall Length | 10¾” (27.3 cm) |
| Jaw Size | 17 mm |
| Function | Tissue Grasping, Polyp Removal and Manipulation |
| Application | Gynecological Surgery |
| Material | Premium Medical Grade Stainless Steel |
| Finish | Satin/Polished |
| Handle Type | Ring Handle |
| Reusable | Yes |
| Sterilization | Autoclavable |
| Corrosion Resistant | Yes |
| Procedures | Ovarian Surgery, Polyp Removal, Pelvic Procedures |
FAQs
1. What are Noto Ovary & Polypus Forceps 10¾” used for?
These forceps are used for grasping, removing, and manipulating ovarian tissue, polyps, and soft tissues during gynecological procedures.
2. What is the purpose of the 17 mm jaws?
The 17 mm jaws provide a precise grasping surface for controlled tissue handling while maintaining surgical accuracy.
3. Which specialty uses Noto Ovary & Polypus Forceps?
These forceps are primarily used in gynecology for ovarian procedures, polyp removal, and uterine tissue management.
4. What material are Noto Ovary & Polypus Forceps made from?
They are manufactured from premium medical-grade stainless steel for durability, corrosion resistance, and repeated sterilization.
5. Can Noto Ovary & Polypus Forceps be reused?
Yes. The instrument is reusable and designed for standard hospital cleaning and steam autoclave sterilization.
6. Why is precision important in ovary and polypus forceps?
Precision jaw design allows controlled tissue grasping and manipulation, supporting accurate and efficient gynecological procedures.

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