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Girard tying forceps provide precision control for ophthalmic suture work. The straight shafts and ultra-fine tying platform deliver stable positioning for delicate suture handling and knot tying. A round knurled handle supports secure grip during prolonged microsurgical procedures.
Features & Benefits
Girard tying forceps are engineered for secure suture knot placement during anterior and posterior segment ophthalmic procedures. The 5mm tying platform provides a wide platform for reliable knot management, while the curved shaft geometry supports access to diverse anterior chamber positions. Dull finish and knurled handle offer secure grip and consistent tactile feedback across routine reuse.
Girard tying forceps feature an ultra‑fine tying platform on a standard‑curve shaft, optimizing one‑handed suture knot placement and management during corneal wound closure. The curved geometry follows natural limbal contours, enhancing surgeon visibility when working along the incision edge or during capsular manipulation. Its round knurled handle balances precision control with tactile feedback during prolonged microsurgical handling.
The Harms-Tubingen tying forceps feature straight shafts with 7mm tying platform and serrated handle, delivering reliable suture management for corneal and limbal closure during penetrating keratoplasty and clear corneal cataract surgery. The straight profile offers direct access to suture sites without obstruction, while the polished finish reduces drag on delicate tissues. This 102mm instrument supports precise closure across anterior segment procedures.
Configured for 10‑0 suture handling, the McPherson tying forceps pair 18mm straight shafts with 5mm tying platforms that catch and wrap fine sutures at the cornea and limbus. The three‑hole handle keeps the 106mm titanium frame light in the surgeon's grip, and titanium construction combines rigidity with corrosion resistance over many cases.
The Paufique suturing forceps is engineered for bimanual suture placement with 1 × 2 teeth set at 45‑degree angles. The 6mm tying platform supports stable needle positioning during interrupted or running suture techniques. Compact 87mm length and wide serrated handle deliver tactile control for delicate conjunctival and corneal wound closure.
Harms-Tubingen curved tying forceps provide reliable control during corneal and scleral suture placement and knot tying. The curved blade geometry conforms to corneal curvature and improves visibility of the operative field. A 7mm tying platform and serrated handle support secure grasp.
The O'Gawa suture‑fixation forceps features straight shafts with 0.12mm ultrafine teeth and 5.5mm tying platform suited to dual‑purpose suture holding and IOL fixation during cataract surgery. The ultrafine tooth pattern prevents slippage on delicate monofilament. The straight configuration enables clear visualization of fixation maneuvers.
These titanium Harms‑Colibri forceps incorporate 0.12mm 1×2 teeth with tying platforms and a short 17×5.5mm grip cut‑out. The 76mm profile supports controlled corneal suturing and fine anterior segment grasping dynamics.
Castroviejo suturing forceps are precision instruments for ophthalmic knot tying and suture manipulation. The 1 × 2 tooth interlocking pattern and 5.5mm tying platform provide secure suture grasp without tissue trauma. A wide serrated handle ensures stable control during delicate tying maneuvers.
The Sanders‑Castroviejo suturing forceps combines heavy straight shafts with 0.12mm fine teeth optimized for precise IOL suturing and corneal closure. The heavy shaft design provides exceptional rigidity during repeated suturing motions, while the ultrafine teeth prevent slippage on fine nylon and monofilament. Durable construction suits high‑case‑volume practices.
The Shepard tying forceps (curved variant) feature a curved geometry with 6mm tying platforms and wide serrated handle, enabling smooth suture management during cataract closure and anterior segment wound approximation. The curved profile adapts to varied incision angles, reducing the need for instrument repositioning during closure. This 110mm instrument supports versatile access during phacoemulsification completion.
The Fine-Castroviejo suturing forceps feature an ultrafine 0.12mm tooth tip with straight shafts, 6mm tying platform, and serrated handle, enabling extreme precision during corneal microsurgery, DSAEK/DMEK endothelial keratoplasty wound closure, and fine anterior segment suturing. The 0.12mm tooth provides the finest possible grip on delicate sutures and anterior capsule edges. At 95mm, this compact length is optimized for intricate corneal and limbal work.
The titanium Sheets‑McPherson tying forceps in 45‑degree angled configuration combines 10.5mm tying platform with reduced weight compared to stainless steel. The angled geometry provides ergonomic access during bimanual IOL and corneal surgery. Titanium construction offers corrosion resistance and enhanced durability over many sterilization cycles.
The Castroviejo suturing forceps with 0.5mm fine teeth and 1 × 2 pattern provides stable suture grasping across varied nylon and monofilament sizes. The 5.5mm tying platform suits standard anterior segment closure techniques, and the fine tooth geometry prevents slippage without crushing. Refined design supports efficient knot placement.
The titanium Castroviejo tying forceps in straight configuration features 7mm tying platform and refined geometry suited to clear visualization during IOL and corneal knot placement. The straight shafts enable unobstructed view of knot formation, and titanium construction offers enhanced durability. The broad platform ensures consistent tying force distribution.
The Kelman-McPherson tying forceps combines angled geometry with extended 8mm tying platforms suited for handling 9-0 to 11-0 sutures. Its guide pin ensures consistent tooth alignment, while the ergonomic fenestrated handle supports secure grip during intricate wound closure. The 110mm length delivers adequate reach from cornea to sclera.
The Anis tying forceps feature delicate 5mm tying platforms with straight shafts, round knurled handle, and dull finish, offering refined control for suture handling in fine ophthalmic procedures. The delicate platform design reduces trauma to delicate tissues like conjunctiva and sclera during knot passage. At 119mm, this instrument provides balanced reach for anterior and posterior segment suturing.
The Barraquer Colibri forceps brings titanium micrograsping precision to fine corneal suture placement. The 0.12mm tip with 1 × 2 teeth engages monofilament securely, and 6mm tying platforms support knot positioning. The compact 85mm length and flat square-grip handle provide ergonomic control for delicate anterior segment work.
The Barraquer Colibri forceps in titanium combines 0.12mm 1 × 2 interlocking teeth with 6mm tying platforms for delicate tissue grasping and suture tying during ophthalmic microsurgery. The fine angled tips engage conjunctiva, sclera, and corneal tissue without crush, while the 6mm platforms hold suture securely during knot tying. The square grip flat handle preserves fingertip control across long microsurgical sequences.
These Bechert‑McPherson tying forceps include angled shafts and 10mm tying platforms optimized for broad suture support. The three‑hole handle and 105mm length aid in fine knot advancement and stabilization.
The Bechert-McPherson titanium tying forceps delivers the durability and precision required for repeated corneal and scleral suture work. The 45-degree angle and 10mm tip-to-bend measurement position the tying platform optimally for limbal access. Titanium construction ensures corrosion resistance through many sterilization cycles.
The Berens curved suturing forceps features heavy curved shafts with 2 × 2 fine tooth pattern and crisscross serration suited to robust anterior segment suturing in challenging positions. The heavy construction provides exceptional rigidity, and the curved geometry accommodates natural surgical access. Fine tooth pattern prevents slippage on standard nylon and monofilament.
The Bonn suture forceps pairs 0.12mm tips with a 1 × 2 interlocking‑tooth pattern and tying platforms set at 90 degrees, suited to fine suture manipulation during corneal and limbal wound closure. The ergonomic fenestrated handle reduces instrument mass during sustained microsurgical work, and the platforms hold suture securely during knot tying.
These Bonn suture forceps include delicate 1×2 teeth with integrated tying platforms and straight 20mm shafts. The long 110mm body enhances controlled reach for deep anterior chamber suturing and knot maneuvers.
These Bonn suture forceps feature delicate 1×2 teeth without tying platforms, producing a compact working profile for fine corneal and scleral bite placement. The three‑hole handle provides calibrated rotational control during micro‑suture manipulation.
These titanium Bonn suture forceps incorporate delicate 1×2 teeth, tying platforms, and straight 20mm shafts. The titanium alloy reduces instrument weight, improving micro‑tactile feedback during suture capture.
Bonn suturing forceps in the long model carry 0.12mm teeth and a 5mm tying platform behind the tips for combined grasp and knot construction in fine corneal and conjunctival closure. The serrated handle delivers consistent finger purchase, and the polished finish keeps the slender shafts visible during microsurgical use. Overall length is 96mm.
The Bonn suturing forceps features straight shafts with 0.12mm ultrafine teeth and 5mm tying platform suited to delicate corneal and IOL suturing. The straight geometry enables clear visualization during precise knot placement, and the ultrafine tooth pattern prevents slippage on fine monofilament. Refined design supports efficient closure across varied cataract approaches.
Bonn suturing forceps pair 0.12mm teeth with an integrated tying platform, letting the surgeon grasp the wound edge and tie the suture without instrument changes. The straight short‑model shafts and serrated handle keep the working profile compact for corneal and conjunctival suturing at 80mm overall. A workhorse in the cataract and corneal close.