The Neurosurgery Surgical 8″ Bengolia Artery Forceps Curved 1×2 Teeth is a precision-crafted surgical instrument developed to meet the demanding requirements of modern neurosurgery, microsurgery, spinal surgery, and vascular procedures. Designed to provide dependable vascular occlusion and secure tissue handling, this instrument combines a compact yet practical 8-inch length with a curved jaw profile and precision-engineered 1×2 toothed tips, making it an essential tool for surgeons performing delicate operative procedures.
Maintaining effective hemostasis is critical during neurosurgical operations where even minimal bleeding can obstruct the surgical field and compromise visualization. The Neurosurgery Surgical 8″ Bengolia Artery Forceps Curved 1×2 Teeth is specifically engineered to clamp arteries, veins, and small blood vessels while allowing surgeons to manipulate tissues with exceptional precision. Its reliable gripping capability helps maintain a clean operative field and supports efficient surgical workflow.
The curved jaw configuration allows improved access to deep anatomical structures and confined operative spaces that are often encountered during cranial and spinal surgery. The curved profile enables surgeons to work comfortably around delicate neural tissues, vascular structures, and surrounding anatomy without obstructing their view through the operating microscope. This design enhances maneuverability and contributes to greater surgical accuracy during intricate procedures.
The finely machined 1×2 toothed jaws provide a secure grip on vessels and soft tissues while minimizing the risk of slippage. The precise tooth alignment allows controlled tissue engagement without applying excessive force, helping preserve surrounding anatomical structures. This combination of secure grasping and atraumatic handling is particularly important in neurosurgery, where delicate tissue preservation is essential.
Manufactured from premium surgical-grade stainless steel, the Neurosurgery Surgical 8″ Bengolia Artery Forceps Curved 1×2 Teeth offers superior corrosion resistance, exceptional strength, and outstanding long-term durability. The instrument maintains accurate jaw alignment and consistent clamping performance even after repeated clinical use and sterilization. Its high-quality construction ensures dependable performance in demanding hospital environments.
The ergonomic finger ring handles provide excellent balance and comfortable operation throughout lengthy procedures. The integrated ratchet locking mechanism securely maintains the desired clamping pressure without requiring continuous hand force, reducing surgeon fatigue while ensuring consistent vessel occlusion. The ratchet engages smoothly and releases easily for efficient instrument handling during surgery.
The satin finish minimizes glare from operating room lights and surgical microscopes, improving visibility during precision procedures. Smooth, polished surfaces facilitate thorough cleaning and simplify maintenance while supporting effective sterilization protocols. Fully autoclavable and reusable, the instrument is suitable for hospitals, surgical centers, specialty clinics, and medical teaching facilities.
The Neurosurgery Surgical 8″ Bengolia Artery Forceps Curved 1×2 Teeth is widely utilized in neurosurgery, spinal surgery, vascular surgery, ENT procedures, plastic surgery, and general surgery. Its combination of precision engineering, ergonomic design, secure gripping capability, and durable stainless steel construction makes it a trusted instrument for surgeons who require reliable performance during complex surgical procedures.
Key Features
- Precision-engineered 8-inch Bengolia artery forceps
- Curved jaws provide improved access to deep surgical fields
- 1×2 toothed tips ensure secure vessel and tissue grip
- Designed for effective vascular clamping and hemostasis
- Premium surgical-grade stainless steel construction
- Precision-aligned jaws for reliable clamping performance
- Ergonomic finger ring handles for superior control
- Ratchet locking mechanism maintains secure occlusion
- Satin finish minimizes glare under operating room lighting
- Corrosion-resistant for long-term clinical use
- Fully reusable and autoclavable
- Suitable for neurosurgery, spinal surgery, vascular surgery, ENT, and general surgery
Product Specifications
| Specification | Details |
|---|---|
| Product Name | Neurosurgery Surgical 8″ Bengolia Artery Forceps Curved 1×2 Teeth |
| Instrument Type | Artery Forceps |
| Overall Length | 8 inches |
| Jaw Configuration | Curved |
| Tip Style | 1×2 Teeth |
| Handle Type | Finger Ring Handle |
| Locking Mechanism | Ratchet Lock |
| Specialty | Neurosurgery, Spine Surgery, Vascular Surgery, ENT, General Surgery |
| Material | Premium Surgical Grade Stainless Steel |
| Finish | Satin Finish |
| Reusable | Yes |
| Sterilization | Fully Autoclavable |
| Corrosion Resistant | Yes |
| Latex Free | Yes |
| Clinical Application | Vessel Clamping, Hemostasis, and Tissue Grasping |
FAQs
1. What is the Neurosurgery Surgical 8″ Bengolia Artery Forceps Curved 1×2 Teeth used for?
It is used to clamp blood vessels, control bleeding, and securely grasp tissues during neurosurgical, spinal, vascular, and other delicate surgical procedures.
2. What is the benefit of the curved jaw design?
The curved jaws provide improved access to deep operative sites, enhance visibility, and allow precise manipulation around delicate anatomical structures.
3. Why are the jaws designed with 1×2 teeth?
The 1×2 toothed configuration provides a secure grip on vessels and tissues, minimizing slippage while maintaining controlled and precise handling.
4. Can this artery forceps be sterilized and reused?
Yes. It is manufactured from premium surgical-grade stainless steel and is fully reusable after standard steam autoclave sterilization.
5. Which surgical specialties commonly use this instrument?
This instrument is commonly used in neurosurgery, spinal surgery, vascular surgery, ENT surgery, plastic surgery, microsurgery, and general surgical procedures requiring reliable vascular control and tissue manipulation.

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