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The Akahoshi nucleus sustainer employs titanium construction with a distinctive paddle‑shaped tip for atraumatic support and manipulation of nuclear fragments during phacoemulsification. The paddle geometry distributes force across a broad surface, minimizing corneal endothelial trauma. Titanium rigidity ensures consistent nucleus positioning throughout the emulsification sequence.
Features & Benefits
The Akahoshi Paddle pre‑chopper handles softer nuclei (grades 1‑2) with a paddle tip geometry that distributes force across a wider nuclear surface, reducing the risk of posterior capsule rupture. The round knurled handle provides secure, fatigue‑resistant grip during prolonged chopping, and the 120mm length balances access with precise control in the anterior chamber.
These Akahoshi phaco pre‑chopper forceps feature a 30� angled profile with 4.5mm delicate jaws and sharp pointed tips. The three‑hole handle and 120mm length support stable nucleus division with up to 30mm opening.
Engineered for prechopping firm nuclei before phaco energy is applied, the Akahoshi prechopper uses a cross‑action mechanism to split the lens within the capsular bag through a single instrument pass. The angled titanium tips enter the anterior chamber through a clear corneal incision, then spread to divide the nucleus along its natural cleavage planes. Titanium construction keeps the cross‑action precise and corrosion‑resistant across repeated autoclave cycles.
The Akahoshi splitter brings precision nucleus management to small-incision phaco cases. Its straight 0.75mm ring design secures hard nuclei for controlled splitting while the 1.6mm outer diameter fits comfortably through MICS incisions without widening the entry. Titanium construction combines durability with predictable feel during the Karate split or completing chop sequences.
This Akahoshi Sub II combo pre‑chopper is designed for soft nuclei grades 1‑2 and optimized for use through a 2mm incision. The blade configuration supports early nucleus division and internal expansion without excessive zonular stress.
The Akahoshi Universal II pre‑chopper is calibrated for nuclei grades 2‑4 and accommodates incisions as small as 2‑2.2mm, enabling maximum wound closure benefits in microincision cataract surgery. The straight narrow jaw design permits precise chopping strokes parallel to the ophthalmic axis without widening the incision. This geometry optimizes nuclear fragmentation while minimizing corneal stress.
This Akahoshi Vienna Window prechopper uses double‑edged broader blades with thickness matched to the Combo‑Prechopper IV for consistent chamber dynamics. The blade design accommodates grade 1‑5 nuclei by providing controlled penetration and spreading force.
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 Aker lens pusher seats an intraocular lens into the capsular bag with a Y/U‑shaped tip that cradles the optic edge. A straight shaft preserves a direct approach through the clear‑corneal incision, and the round flat handle provides a stable, low‑profile grip during the maneuver. The supplied guard protects the working tip during storage and transport.
The Alabama utility forceps delivers reliable tissue grasping across general ophthalmic procedures. The serrated jaw design maintains secure grip on tough tissues and dressings without slipping. The polished finish and straight configuration suit both right and left‑handed surgeons in varied field geometries.
This compact Alfonso speculum combines small 5mm blades with a wide 27mm spread for localized eyelid elevation while maintaining excellent visualization of the surgical field. The reduced blade size is particularly useful in small incisions and limited access cases. The wide spread provides adequate surgical mobility despite the compact blade profile.
The Alfonso eye speculum opens wide at 27mm spread with 14mm open blades, supporting excellent anterior segment visualization for routine and complex procedures. The open blade design allows rapid eyelid retraction and easy assistant access for lens insertion and aspiration. Suitable for all anterior segment approaches.
This 1mm Algerbrush burr tip is designed for selective corneal rust ring removal and epithelial polishing. The small diameter allows precise control when cleaning iron-stained tissue without extending beyond the clinical pathology. This reusable tip integrates with standard motorized handpiece systems for efficient debris removal.
The Algerbrush II is a battery‑operated motorized handpiece designed to remove corneal rust rings and superficial foreign bodies with a 0.5mm carbide burr. Single‑speed operation gives the clinician predictable rotation, and the included tip cover protects the burr between uses. Powered by a single AA battery, the 105mm handpiece is sized for office and exam‑room use.
The Algerbrush II removes corneal rust rings and small foreign bodies with a battery‑driven 1mm carbide burr. A single‑speed motorized handpiece delivers consistent rotation while a torque‑limited clutch slips before the burr can drive into Bowman's layer. The tip cover protects the burr between cases, and the AA cell makes setup straightforward at slit lamp or chairside.
Powered by a single AA battery, this Algerbrush 2 pterygium handpiece drives a 2.5mm round diamond burr at a single speed for surface debridement of corneal rust rings, pterygium remnants, and epithelial irregularities. The fine‑grit diamond surface removes tissue gradually under tactile control, and the included tip cover protects the burr between uses. The 105mm motorized body sits comfortably in pencil grip.
This battery-operated Algerbrush 2 is configured for pterygium debridement and limbal tissue smoothing. The 4mm fine-grit diamond burr wheel operates at steady single speed, providing consistent abrading force across the pterygium apex and scleral attachment. The compact motorized handpiece enables precise removal of residual fibrous tissue while minimizing healthy conjunctival trauma.
The Algerbrush 2 is a motorized hand piece designed to treat pterygium by removing aberrant conjunctival and fibrovascular tissue. The 5mm diamond wheel burr operates at a single speed for controlled abrasion of the surgical bed. Battery operation provides cordless portability and ready access.
This replacement chuck for the Algerbrush 2 handpiece is sold individually and provides the mechanical coupling interface between the motor and burr. Precision engineering ensures reliable concentricity and backlash‑free rotation during corneal abrasion procedures. Stainless steel construction supports repeated sterilization and multi‑case durability.
The Algerbrush 2 replacement motor powers corneal rust ring removal and surface epithelial debridement with consistent rotational speed and torque. This motor unit enables rapid, efficient ablation of iron‑oxide deposits without manual abrasion, reducing surgical time and tissue trauma. Compatible with standard Algerbrush 2 handpieces and accessories.
This aluminum‑handled freehand trifacet diamond knife combines fingertip control with a 1mm blade width and 4mm cutting length for corneal incision precision. The trifacet geometry produces three angled entry facets that promote reproducible wound architecture in ophthalmic cataract and refractive work. Reusable aluminum construction supports sustained clinical use with durability across repeated procedures.
The Anis ball capsule polisher features a 1mm sandblasted tip on a gently curved shaft that accommodates the natural contours of the capsular bag during phacoemulsification cleanup. Its flexible 18mm working geometry allows reach through both phaco and side-port incisions, making it particularly useful for polishing residual cortical material from posterior capsule. The dull-finish round knurled handle provides secure fingertip control throughout the polishing stroke.
This titanium Anis ball‑tip manipulator features an angled distal tip with an elongated 0.6mm × 0.8mm ball profile for enhanced reach and gentle nucleus engagement. Titanium construction provides excellent balance and reduced hand fatigue.
This Anis corneal suture marker contains eight evenly spaced blades configured within an 8mm circular pattern. The flat handle enhances axial stability during suturing reference creation, and the 108mm profile supports consistent centration.
The Anis cortex aspirating cannula is designed for efficient cortical lens remnant removal during cataract surgery. The 23g thin‑wall geometry with 0.3mm aspiration port and sandblasted tip provides gentle, responsive cortex pickup. The straight configuration supports straightforward hand control.
The Anis cortex aspirating cannula combines a 23ga thin‑wall shaft with a 0.3mm angled aspiration port and 2mm sandblasted tip, engineered for controlled cortical cleanup during phaco and femtosecond laser procedures. The thin‑wall gauge minimizes incision enlargement while the sandblasted tip improves visualization during epinucleus and cortical removal. Angled port geometry directs aspiration away from posterior capsule during final cleanup.
The Anis capsule polisher features a 1.5mm flat disk tip on a gently curved shaft for controlled cortical cleanup during phacoemulsification. The dull finish minimizes glare while the tip guard protects the posterior capsule during final lens cortex removal. Round knurled handle and stainless‑steel construction deliver reliable durability across reprocessing cycles.
Designed for nucleus delivery, this Anis vectus combines a 5 × 7mm 26ga loop with two irrigating ports that float the nucleus out of the bag during expression. A dimple at the top of the loop captures the equator of the nucleus for stable extraction, and the polished 46mm body slips through a limbal incision without snagging tissue. The result is a controlled lift that protects the posterior capsule.
The Anis micro scissors combine squeeze‑action handle mechanics with a very fine 23ga shaft and 20mm working length, enabling ultra‑precise incision and dissection in confined microsurgical fields. The ergonomic squeeze handle eliminates the thumb-hole fatigue common with ring handles, while the extremely fine shaft minimizes tissue trauma. Stainless‑steel construction ensures durability and corrosion resistance across multiple sterilization cycles.