Your cart is empty!
The McPherson tying forceps is a precision micro-ophthalmic instrument featuring 0.3mm fine tips and 6mm titanium carbide tying platforms. Its 45-degree angled geometry provides optimal positioning for delicate knot management during cataract and corneal procedures. The flat 6mm wide handle supports stable, controlled micro-movements.
Features & Benefits
The McPherson titanium angled tying forceps combines lightweight, corrosion‑resistant titanium construction with a compact 4mm tying platform for ultra‑fine corneal and scleral wound closure. Its angled geometry provides excellent visualization of the operative field, while the serrated handle supports secure grip without hand fatigue. The 82mm overall length permits precise movements in confined anterior chamber spaces.
These titanium McPherson tying forceps are angled and include 5mm tying platforms for secure knot support. The three‑hole handle and 105mm overall length enhance rotational and axial control.
The McPherson tying forceps features 7.5mm tying platforms�broad flat working surfaces that stabilize sutures during knot formation. The angled shaft at 105mm length positions the platforms optimally for wound closure at the cornea and limbus. Titanium construction provides rigidity and corrosion resistance through repeated sterilization cycles.
The titanium McPherson tying forceps combines straight configuration with 4mm tying platform and reduced weight compared to stainless steel. The compact platform suits microincision cataract surgery approaches, while titanium construction offers corrosion resistance. Lightweight design supports efficient tying without hand fatigue during extended cases.
The O'Gawa Castroviejo tying forceps features a 6mm tying platform with straight shafts optimized for fine monofilament and nylon passage during anterior segment closure. The broad platform distributes knot‑tying force across stable contact, while the refined Castroviejo geometry ensures consistent suture manipulation. Fine tip configuration minimizes mucosal trauma.
The O'Gawa-style suture forceps in titanium delivers curved geometry optimized for fine wound closure work. Its 0.12mm ultrafine tip with 1 × 2-tooth pattern grips delicate sutures without deformation, while the 6mm tying platforms provide stable positioning. The round ergonomic handle supports prolonged, fatigue-free manipulation during intricate corneal and limbal closure.
These O'Gawa‑style suture forceps carry a 1 × 2 tooth pattern at a 0.12mm tip, paired with 6mm tying platforms for combined grasping and knot management during corneal and scleral closure. The straight shafts route directly to the wound, and a round handle balances at the fingertip for sustained microsurgical tying. Titanium construction adds rigidity and corrosion resistance over many sterilization cycles.
The O'Gawa curved tying forceps features 5.5mm tying platform with 0.3mm gap at platform heel, enabling smooth suture transition during efficient IOL and corneal knot placement. The curved shafts provide ergonomic access while the refined O'Gawa geometry enhances tying control. The gap design minimizes suture trauma during knot formation.
This O'Gawa curved tying forceps variant features 5.5mm tying platforms with 0.3mm gap at platform heel, providing alternative curved configuration for ergonomic IOL and corneal knot placement. The curved shafts suit natural surgical positioning angles while the gap design minimizes suture trauma. Each variant supports efficient tying across routine cases.
The O'Gawa straight tying forceps features 5.5mm tying platform with 0.3mm gap at platform heel suited to efficient IOL and corneal knot placement with clear visualization. The straight shafts enable unobstructed view of knot formation, and the refined gap design minimizes suture trauma. The O'Gawa geometry enhances consistent tying across varied suture materials.
The Osher tying forceps features curved shafts with 6.5mm tying platform and serrated handle suited to efficient IOL and corneal suture tying across anterior segment approaches. The curved geometry accommodates natural surgical access angles, and the broad platform distributes knot‑forming force. Durable construction supports routine sterilization cycles.
The Osher ultra‑fine tying forceps features curved shafts with 6.5mm tying platform and refined geometry suited to delicate monofilament tying in microincision cataract and refractive surgery. The exceptionally fine tip profile prevents suture trauma while the curved shafts provide ergonomic access. Lightweight construction supports prolonged precision work.
The Paton suture forceps combines straight shafts with extra‑delicate sharp pointed tips suited to fine suture passage and corneal graft closure. The sharp point profile enables precise needle engagement during tied‑and‑buried knot placement. The straight geometry maintains clear visualization throughout suturing sequences.
The Paufique suturing forceps features straight shafts with tips angled 90 degrees inward, creating a distinctive geometry suited to precise IOL and suture manipulation in narrow anterior chamber spaces. The right‑angle tip configuration accommodates varied knot‑tying positions. Fine tip profile ensures consistent suture grip without crushing.
Pierce suture forceps deliver millimetric precision for wound closure and suture manipulation in anterior segment work. The 0.25mm notched tip grips individual suture segments without crushing, while the 6mm tying platforms enable two-hand knot tying geometry. Titanium construction is built for reliable performance and lasting durability across repeat clinical use.
The Pierce suture forceps delivers titanium precision for knot placement and corneal suture management following cataract or corneal surgery. The curved tip and 0.25mm notched end engage suture material without crushing monofilament strands. Six-millimeter tying platforms support knot advancement while the flat square-grip handle and 114mm length enable ergonomic tensioning.
The Pierse-style Colibri forceps in titanium combines angled 45-degree geometry with ultraprecise 2mm fine-tip length. Its notched teeth at 0.25mm spacing grip delicate sutures without crushing, while the 6mm tying platforms distribute clamping force. The flat square-grip handle and compact 84mm length enable controlled finger dexterity during fine wound closure.
Puntenney tying forceps offer a 12mm curved tying platform for confident knot manipulation in ophthalmic suturing. The curved shafts angle toward the wound for natural wrist alignment during corneal and scleral closure, and the long platform supports controlled wrapping of fine sutures. A serrated handle keeps the pinch grip secure through repeated throws.
The Sauer suturing forceps feature straight shafts with 1 × 2 teeth set at 45 degrees, wide serrated handle, and polished finish, enabling precise suture engagement during ophthalmic closure and lid procedures. The angled tooth pattern optimizes grip geometry for suture passage, while the wide handle distributes force evenly during knot formation. This 87mm instrument supports reliable closure across anterior segment work.
The Sauer suturing forceps features 1 × 2 fine teeth angled 90 degrees inward to provide secure, controlled purchase on suture material during corneal and conjunctival wound closure. The wide serrated handle reduces hand fatigue during extended closure procedures, while the straight shaft and polished finish support reliable performance across routine sterilization. The 87mm overall length enables precise hand positioning.
The Sheets‑McPherson tying forceps in 45‑degree angled configuration features 10.5mm tying platform suited to efficient IOL and corneal knot placement across varied incision positions. The angled shafts provide ergonomic surgeon access, and the broad tying surface distributes knot‑forming force evenly. Durable stainless steel supports routine sterilization.
Shepard tying forceps in the 45 degrees angled configuration support knot tying away from the operating field during cataract wound closure or IOL haptic positioning. The integrated tying platform provides a flat surface for suture rotation, and a wide serrated handle gives stable fingertip control across the 110mm length. Angled shafts keep the surgeon's hand clear of the corneal apex during knot rotation.
The Shepard tying forceps features 45‑degree angled straight shafts with 5mm bend‑to‑tip design suited to ergonomic IOL and suture tying in varied incision positions. The angled configuration provides natural surgeon positioning while the 5mm tying surface distributes knot‑forming force. Refined design supports efficient knot placement across routine and advanced cases.
The Shepard tying forceps delivers straight-shaft control for wound and IOL manipulation in anterior chamber surgery. Its 4mm tying platform and wide serrated handle enable secure suture grasping and positioning without excessive handle bulk. The extended 110mm length supports consistent reach and tactile control during closures.
The Shepard tying forceps in titanium feature angled 45-degree geometry with wide serrated handle and tying platform, delivering excellent control during phacoemulsification closure and anterior segment suturing. The titanium construction reduces intraoperative fatigue while providing corrosion resistance across repeated cases. The angled approach improves visibility at the surgical site without requiring repeated repositioning.
The Sinskey straight tying forceps feature a fine 7mm tying platform with cross-action jaws, flat wide smooth handle, and dull finish, providing ergonomic comfort and reliable suture management during extended suturing procedures. The straight geometry offers direct access without obstruction, while the wide smooth handle accommodates various grip styles. This 111mm instrument supports stable control during complex wound closure.
These Jaffe tying forceps incorporate straight 23mm shafts and a three‑hole handle for controlled linear suture placement. The 100mm length improves microsurgical reach.
The Snider-Castroviejo tying forceps incorporates a 0.12mm tip with 1 × 2 teeth, tying platforms, and a guide pin for controlled suture manipulation during ophthalmic knot formation. The three-hole handle geometry optimizes fingertip precision work, while the integrated tying platform reduces hand fatigue during repetitive knot tying at the limbus and cornea. Reusable stainless steel construction ensures consistent tactile feedback.
The Stern‑Castroviejo tying forceps features tying platforms�flat working edges at the tip that support secure suture manipulation during closure. At 0.5mm, the refined tip geometry combined with the locking mechanism ensures stable knot formation at the limbus or cornea. Stainless steel construction provides the reliability and durability required across repeated clinical cases.