The Ophthalmology Clayman Tittarelli Lens Hold Forceps are expertly engineered ophthalmic microsurgical instruments designed for the precise handling, stabilization, and positioning of intraocular lenses (IOLs) during cataract surgery and other anterior segment procedures. Their specialized design enables ophthalmic surgeons to securely hold delicate lenses without damaging the optic or haptics, ensuring safe implantation and improved surgical outcomes.
In modern ophthalmic surgery, particularly during phacoemulsification and refractive lens exchange procedures, accurate manipulation of intraocular lenses is essential. The Clayman Tittarelli Lens Hold Forceps are specifically developed to provide a firm yet gentle grip on both foldable and rigid IOLs. Their finely aligned atraumatic jaws minimize the risk of scratches, deformation, or slippage, allowing surgeons to maintain complete control throughout the implantation process.
Manufactured from high-quality surgical-grade stainless steel, these forceps offer outstanding corrosion resistance, durability, and precision. The satin or matte finish minimizes glare under the operating microscope, enhancing visualization and reducing eye strain during microsurgical procedures. Precision machining ensures accurate jaw alignment and smooth operation, supporting consistent performance throughout repeated surgical use.
The ergonomic handle design improves comfort while reducing hand fatigue during lengthy procedures. Their lightweight construction provides excellent tactile feedback, allowing surgeons to perform delicate maneuvers with confidence. The balanced design supports controlled movements within the confined space of the anterior chamber, contributing to safer and more efficient lens implantation.
The Ophthalmology Clayman Tittarelli Lens Hold Forceps are widely used during cataract extraction, intraocular lens implantation, secondary IOL fixation, refractive lens exchange, and other ophthalmic microsurgical procedures. Their versatile design accommodates a wide variety of foldable acrylic, silicone, and PMMA intraocular lenses commonly used in modern eye surgery.
Designed for repeated clinical use, these reusable forceps withstand frequent cleaning and sterilization without compromising their structural integrity or precision. They are fully compatible with standard steam autoclave sterilization methods, making them suitable for hospitals, ophthalmic surgery centers, ambulatory surgical facilities, and specialty eye clinics.
Quality craftsmanship and rigorous manufacturing standards ensure dependable performance in every procedure. The instrument’s precision-engineered jaws, ergonomic balance, and durable construction make it an essential addition to ophthalmic surgical instrument sets. Surgeons rely on these forceps for consistent lens handling, improved surgical efficiency, and enhanced patient safety.
Whether performing routine cataract surgery or complex intraocular lens procedures, the Ophthalmology Clayman Tittarelli Lens Hold Forceps provide the precision, reliability, and durability required by today’s ophthalmic professionals. Their superior design supports delicate microsurgical techniques while delivering long-lasting clinical value.
Key Features
- Designed for precise intraocular lens (IOL) handling
- Securely stabilizes foldable and rigid intraocular lenses
- Fine atraumatic jaws reduce the risk of lens damage
- Precision jaw alignment for accurate lens manipulation
- Manufactured from premium surgical-grade stainless steel
- Satin finish minimizes glare under surgical microscopes
- Lightweight ergonomic handle for superior comfort
- Excellent tactile feedback during microsurgery
- Corrosion-resistant for long-term durability
- Fully reusable and autoclavable
- Suitable for advanced ophthalmic microsurgical procedures
- Manufactured to professional surgical quality standards
Product Specifications
| Specification | Details |
|---|---|
| Product Type | Lens Hold Forceps |
| Application | Intraocular Lens (IOL) Handling & Stabilization |
| Material | Premium Surgical Grade Stainless Steel |
| Finish | Satin / Matte Finish |
| Sterilization | Steam Autoclavable |
| Reusability | Yes |
| Specialty | Ophthalmology |
| Instrument Type | Microsurgical Lens Forceps |
| Usage | Cataract Surgery & IOL Implantation |
Product Contents
- 1 × Ophthalmology Clayman Tittarelli Lens Hold Forceps
Applications
The Ophthalmology Clayman Tittarelli Lens Hold Forceps are commonly used for:
- Cataract surgery
- Phacoemulsification procedures
- Intraocular lens (IOL) implantation
- Foldable IOL handling
- PMMA lens placement
- Acrylic and silicone IOL positioning
- Secondary intraocular lens fixation
- Refractive lens exchange
- Anterior segment microsurgery
- Ophthalmic surgical training and clinical practice
Frequently Asked Questions (FAQs)
1. What are Clayman Tittarelli Lens Hold Forceps used for?
These forceps are designed to securely grasp, stabilize, and position intraocular lenses during cataract surgery and other ophthalmic lens implantation procedures.
2. Can these forceps be used with foldable intraocular lenses?
Yes. The atraumatic precision jaws safely handle foldable acrylic, silicone, and rigid PMMA intraocular lenses while minimizing the risk of damage.
3. What material are the forceps made from?
The instrument is manufactured from premium surgical-grade stainless steel for superior corrosion resistance, durability, and precision.
4. Are the Clayman Tittarelli Lens Hold Forceps reusable?
Yes. They are designed for repeated clinical use and can withstand multiple sterilization cycles without compromising performance.
5. How are these forceps sterilized?
They are fully compatible with standard steam autoclave sterilization methods used in hospitals and surgical centers.
6. Which ophthalmic procedures commonly require these forceps?
They are commonly used during cataract extraction, phacoemulsification, intraocular lens implantation, refractive lens exchange, and secondary IOL fixation procedures.
7. What advantages do these forceps offer during surgery?
Their ergonomic design, precise jaw alignment, and atraumatic gripping surface provide enhanced control, improved lens stability, reduced risk of implant damage, and greater surgical efficiency.

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