Your cart is empty!
The Lehner‑Utrata capsulorhexis forceps combines gently curved shaft geometry with Utrata‑like fine tips suited to precise continuous circular capsulorhexis across routine cataract cases. The gentle curve and fine tips enable controlled flap creation without variable diameter or tearing. Refined spring action supports consistent handling.
Features & Benefits
This Lerner‑Croy capsulorhexis forceps combines fine angled cystotome tips with slight serrations to secure anterior lens capsule tissue during rhexis creation. The 11.5mm vaulted shank geometry optimizes approach angle while the round fenestrated handle distributes grip pressure across the palm. Designed for controlled, continuous capsular tear initiation and extension.
Built for continuous curvilinear capsulorhexis, these Utrata forceps carry long, extremely thin angled shafts that pass through a small clear corneal incision with minimal wound distortion. The 11mm bend‑to‑tip distance reaches the capsule with the fine bent tips presenting tangentially for tear propagation. A three‑hole handle reduces weight and gives consistent finger purchase across the maneuver.
Fine angled tips on this Lehner‑Utrata capsulorhexis forceps enable controlled grasping throughout continuous capsulorhexis. Fine tip geometry combined with shaft orientation delivers reliable, repeatable anterior capsular work. The round handle supports natural rotation and tactile feedback during the procedure.
Designed for anterior capsular work during phacoemulsification, this O'Gawa‑Utrata capsulorhexis forceps combines fine tip geometry with optimized shaft orientation for superior visualization. Angled shaft geometry improves approach angle and visualization during clear corneal capsulotomy. The round handle supports natural rotation and tactile feedback during the procedure.
These Akahoshi‑Tjia MICS capsulorhexis forceps include vaulted shafts, triangular tips, and laser‑etched 1mm lines for reference inside 1.8mm incisions. The alignment mechanism supports consistent capsular tear initiation in micro‑incision settings.
The Bloomberg-Pierce-style Utrata forceps combines a 0.25mm notched tip with 45-degree angling for capsulorhexis initiation and completion. The 14mm bend-to-tip geometry creates optimal mechanical advantage for engaging and tearing the lens capsule under tension. Titanium construction ensures lasting performance across routine phacoemulsification cases.
The Calladine-Inamura capsulorhexis forceps is engineered for precision manipulation of the anterior lens capsule with an ergonomic round handle. The straight-shaft design provides direct approach to the capsular margin during cataract surgery. The fine tip geometry supports controlled, continuous capsulorhexis without tearing.
The Calladine‑Inamura capsulorhexis forceps in titanium is engineered for consistent capsular control during phacoemulsification. The round handle geometry allows secure finger positioning and controlled capsule engagement without fatigue. Titanium construction combines lightweight handling with corrosion resistance across many cases.
This cross‑action capsulorhexis forceps features 11mm delicate shafts and sharp tips for controlled anterior capsule opening during cataract surgery. The titanium construction and delicate design minimize capsular trauma during the critical rhexis maneuver. The round handle and 120mm length support precise capsular control.
The capsulorhexis forceps in extra delicate pattern with angled geometry and vaulted serrated tips facilitate continuous rhexis in dense or brunescent cataracts where tissue compliance is reduced. The 13mm bend to tip improves access angle, and the angled shaft positions tips naturally along the capsular plane. Stainless‑steel construction maintains tip geometry across challenging cases.
These titanium capsulorhexis forceps incorporate extremely thin shanks with an 11mm tip‑to‑bend distance and cystotome‑shaped tips for precise capsular flap control. The geometry enables controlled tearing vectors during capsulorhexis creation.
This titanium capsulorhexis forceps delivers precision manipulation of the anterior lens capsule during cataract surgery. The flat angled jaws with cystotome-style tips enable safe engagement without capsular tearing. The vaulted 12mm bend-to-tip geometry and cross-action mechanism provide consistent control across nuclear densities, while the 121mm overall length supports stable handling.
The Utrata capsulorhexis forceps in this compact 84mm length with flat handle deliver precise rhexis control in confined anterior chamber access. Titanium construction ensures rigidity at the delicate tips while keeping overall weight minimal. The short profile suits high‑magnification work where long handles create unwanted vibration and fatigue.
This Devgan‑Utrata capsulorhexis forceps delivers fine tip control for precise anterior capsular manipulation during phacoemulsification. Titanium construction combines exceptional rigidity with superior corrosion resistance for lasting durability across many surgical cases. The round handle supports natural rotation and tactile feedback during the procedure.
The round handle on this Devgan‑Utrata capsulorhexis forceps enables natural rotation and tactile control throughout the procedure while maintaining fine tip precision. Fine tip geometry combined with shaft orientation delivers reliable, repeatable anterior capsular work. Titanium construction combines exceptional rigidity with superior corrosion resistance for lasting durability across many surgical cases. The round handle supports natural rotation and tactile feedback during the procedure.
The Devine angled capsulorhexis forceps features extra‑delicate sharp tips and a vaulted curve designed for precise anterior capsular engagement during MICS and phacoemulsification. At just 1.8mm maximum opening, the instrument fits through micro‑incision pathways while the 12mm bend‑to‑tip geometry delivers superior visualization of the capsular rhexis initiation and propagation.
These Florakis �Reverse Utrata� endothelial DSAEK forceps incorporate extremely thin shafts angled 11mm from bend to tip. The reversed triangular grasping tips provide controlled engagement for delicate endothelial tissues.
Florakis titanium endothelial DSAEK forceps deliver precision grasping for Descemet's stripping automated endothelial keratoplasty without graft endothelial cell loss. The unique reversed triangular tip geometry minimizes contact area and trauma to the graft tissue, while the angled long, extremely thin shaft provides excellent visibility and access. Titanium construction ensures rigidity and corrosion resistance across many corneal transplant cases.
The Gianetti‑Dacamara MICS capsulorhexis forceps is purpose‑designed for micro‑incision cataract surgery. Its extra delicate vaulted shanks and vertical vaulted tips allow passage through a 1.5mm incision while maintaining a 2mm maximum jaw opening�ideal for anterior capsule management in compact surgical fields. Stainless steel construction ensures stability and corrosion resistance during continuous curvilinear capsulorhexis.
The Giannetti MICS capsulorhexis forceps is engineered for precise capsular control in minimal-incision cataract surgery (MICS). Its straight shaft design suits the 2mm incision geometry, while the controlled-opening mechanism (rather than lock) allows gentle, progressive tissue engagement. This design reduces capsule tears during continuous curvilinear capsulorhexis (CCC) in tight working spaces.
These Giannetti MICS capsulorhexis forceps feature titanium construction with extra‑delicate vaulted shanks and vertically vaulted micro‑tips. The 2mm maximum jaw opening fits through a 1.5mm incision, aided by a round handle with longitudinal serrations.
The Gimbel capsulorhexis forceps combines Utrata‑style construction with a preset opening geometry of 3mm, designed for controlled continuous curvilinear capsulorhexis initiation and completion. The flat handle provides stable palm control during anterior capsular manipulation. Compact 80mm length supports precise movements within confined anterior chamber spaces.
Fine angled tips on this Grayson-Lehner‑Utrata capsulorhexis forceps enable controlled grasping throughout continuous capsulorhexis. Angled shaft geometry improves approach angle and visualization during clear corneal capsulotomy. Titanium construction combines exceptional rigidity with superior corrosion resistance for lasting durability across many surgical cases. The round handle supports natural rotation and tactile feedback during the procedure.
The Hoffman‑style Utrata capsulorhexis forceps combines extremely delicate thin shafts with angled 17mm working length optimized for anterior capsular rhexis initiation and completion. The wide serrated grip handle follows Castro design principles for stable palm control. Bent tips engage anterior capsule with minimal tissue trauma during continuous curvilinear capsulorhexis.
This Hoffman style Utrata capsulorhexis forceps in titanium features extra delicate thin shafts and angled tips for precise control during capsular opening in dense cataracts. The 17mm distance from bend to tip and blunt angulation support gentle, continuous rhexis along the capsular edge. A wide serrated grip handle delivers superior control and tactile feedback during extended anterior chamber work.
Designed for internal limiting membrane (ILM) peeling during vitreoretinal surgery, this 23‑gauge grasping forceps delivers controlled ILM engagement through its fine 0.6mm tip. The titanium squeeze handle provides ergonomic, single‑hand operation during delicate posterior capsule and epiretinal membrane removal. Titanium construction combines rigidity with superior corrosion resistance.
The Inamura capsulorhexis forceps in titanium features sharp pointed serrated tips angled 45 degrees from a curved shaft with a 10.5mm tip‑to‑pivot distance. The cross‑action geometry enables entry through 1.8mm incisions while maintaining crisp tip control during capsule engagement. The flat ergonomic handle and titanium construction support durability and reduced hand stress.
The Jones‑Inamura capsulorhexis forceps in its E‑range variant features cross‑action tips at 45 degrees with a 1.5mm width at the pivot box for entry through 1.8mm incisions. The pointed serrated interlocking tips and 11mm tip‑to‑pivot geometry ensure reliable capsule engagement, while 1mm markings from tip to 6mm guide precise sizing. The flat handle provides superior ergonomics during extended procedures.
The Jones‑Inamura capsulorhexis forceps features a round ergonomic handle that supports stable finger placement during anterior capsule engagement. The Jones‑Inamura tip geometry is designed for controlled capsulorhexis tear propagation across both routine and complex cataract cases. The handle accommodates variable hand sizes and extended case time.