Wet & Dry Lab

Wet & Dry Lab

01

Phacoemulsification

This wetlab is designed to provide comprehensive hands-on training in Basic Phacoemulsification Cataract Surgery, focusing on the fundamental skills required to safely perform modern cataract surgery.

Participants will learn wound construction, capsulorhexis, hydrodissection, nucleus management, cortical cleanup, IOL implantation, and management of common intraoperative challenges.

This course serves as the foundation for all advanced phaco techniques including Divide & Conquer, Stop & Chop, Horizontal Chop, Vertical Chop, and Femtosecond-Assisted Cataract Surgery.

Learning Objectives

9 items

Upon completion of this wetlab, participants should be able to:

  • Understand phacoemulsification principles
  • Create self-sealing corneal incisions
  • Perform a continuous curvilinear capsulorhexis (CCC)
  • Perform hydrodissection and hydrodelineation
  • Safely rotate the nucleus
  • Execute basic nucleus removal
  • Perform cortical aspiration
  • Implant a foldable intraocular lens (IOL)
  • Recognize and manage common complications
02

Keratoplasty (Dalk)

This hands-on wet lab introduces the principles and surgical techniques of Deep Anterior Lamellar Keratoplasty (DALK). Participants will practise the main steps of the procedure using suitable simulation or donor tissue, with emphasis on achieving deep stromal dissection while preserving the recipient’s healthy Descemet membrane and endothelium.

The session covers trephination, creation of the big bubble, controlled stromal removal, management of incomplete bubble formation, donor tissue preparation with Descemet membrane removal, graft positioning, and corneal suturing. Troubleshooting and management of common intraoperative complications—particularly Descemet membrane perforation—will also be discussed.

Learning Objectives

12 items

By the end of the wet lab, participants should be able to:

  • Identify appropriate indications and contraindications for DALK.
  • Understand relevant corneal anatomy and the surgical planes used during DALK.
  • Select the appropriate trephination depth and safely perform partial-thickness trephination.
  • Perform air injection using the big-bubble technique.
  • Recognize different big-bubble patterns and confirm successful bubble formation.
  • Perform safe anterior and deep stromal dissection.
  • Create a controlled entry into the big bubble and expose Descemet membrane.
  • Apply manual layer-by-layer dissection when the big-bubble technique is unsuccessful.
  • Prepare the donor cornea and safely remove the donor Descemet membrane and endothelium.
  • Position and secure the donor graft using interrupted, continuous, or combined suturing techniques.
  • Recognize and manage microperforation, macroperforation, double anterior chamber, and other common complications.
  • Understand when conversion to penetrating keratoplasty is required.
03

Keratoplasty Ultrathin DSAEK

A practical simulation guide to prepare a thin posterior donor lamella, implant it with minimal endothelial trauma, and demonstrate correct orientation, attachment and pressure checks.

04

Trabeculectomy Wetlab

This guide provides a structured 20-minute plan for instructors conducting a Basic Trabeculectomy Wetlab. The focus is on introducing fundamental surgical steps, technique demonstration, and ensuring candidate understanding of tissue handling and flow control.

By the end of this 20-minute wetlab, the candidate should demonstrate understanding of basic trabeculectomy steps, gentle tissue handling, and watertight closure. The instructor should emphasize intraoperative flow control and postoperative bleb formation concepts.

05

Endocyclophotocoagulation

Learning Objectives

7 items
  • Identify the relevant anatomy: posterior iris, ciliary sulcus, ciliary processes, valleys between processes, pars plicata and relationship to the lens/IOL.
  • Set up and orient the endoscopic probe and interpret the endoscopic image correctly.
  • Obtain controlled intraocular access without damaging cornea, iris, capsule, zonules, lens/IOL or ciliary body.
  • Maintain an appropriate working distance and treat ciliary processes sequentially under direct visualization.
  • Recognize an appropriate tissue response and distinguish it from excessive whitening, popping, charring or tissue disruption.
  • Plan treatment extent while avoiding unintended overlap or excessive cyclodestruction.
  • Recognize common intraoperative problems and state appropriate stop/management principles.
06

Phakic IOL

This wetlab provides comprehensive hands-on training in Phakic IOL for the correction of moderate to high refractive errors.

Participants will learn patient selection, lens sizing, surgical implantation, vault assessment, and management of intraoperative complications.

The program is designed for refractive surgeons seeking to develop proficiency in posterior chamber phakic IOL surgery.

Learning Objectives

8 items

At the completion of this wetlab, participants should be able to:

  • Understand indications and contraindications for phakic
  • Perform proper preoperative planning
  • Select appropriate lens size and power
  • Create safe corneal incisions
  • Inject and position the phakic
  • Correctly place haptics behind the iris
  • Assess postoperative vault
  • Manage intraoperative complications
07

Secondary IOL Fixation

This advanced wetlab focuses on sutureless scleral fixation of posterior chamber intraocular lenses (PCIOLs) using the Yamane Technique and other flanged haptic fixation methods.

Participants will learn the principles of intrascleral haptic fixation, needle docking, haptic externalization, flange creation, and IOL centration.

The course is designed for surgeons managing:

Surgeons Managing

5 items
  • Aphakia without capsular support
  • Dislocated IOLs
  • Dislocated crystalline lenses
  • Complicated cataract surgery
  • Traumatic lens loss

Learning Objectives

9 items

By the end of this wetlab participants should be able to:

  • Select appropriate cases for Yamane fixation
  • Understand scleral fixation anatomy
  • Perform accurate needle entry
  • Dock haptics safely
  • Externalize haptics
  • Create proper flanges
  • Achieve stable IOL centration
  • Avoid tilt and decentration
  • Manage common complications
08

Pupil Expansion

Learning Objectives

6 items
  • Identify causes of inadequate pupil dilation
  • Recognize cases requiring mechanical expansion
  • Perform safe iris hook placement
  • Optimize pupil size for phacoemulsification
  • Minimize iris trauma
  • Handle complications associated with pupil expansion devices
09

Fresh Amniotic Membrane

This wetlab focuses on handling and transplantation of fresh amniotic membrane (AM) in corneal and ocular surface diseases. Participants will learn orientation, preparation, fixation techniques, and clinical applications.

Learning Objectives

5 items

By the end of this wetlab, participants should be able to:

  • Identify epithelial vs stromal side of amniotic membrane
  • Handle fresh AM without damaging its structure
  • Perform:
    • 1) Inlay (graft) technique
    • 2) Overlay (patch) technique
    • 3) Combined (sandwich) technique
  • Select appropriate technique based on pathology
  • Secure AM using sutures and/or glue
10

Tissue Glue/ Corneal Preformation

Learning Objectives

6 items
  • Recognize when tissue adhesive is an appropriate temporizing option and when to escalate.
  • Prepare a dry, stable recipient bed without enlarging the perforation.
  • Apply the smallest effective amount of cyanoacrylate in a controlled fashion.
  • Restore globe integrity, reform/maintain the anterior chamber, and confirm a watertight seal.
  • Protect the glue with a bandage contact lens when appropriate and institute cause-specific treatment.
  • Recognize glue failure, infection, intraocular glue contact, pressure problems, and need for tectonic surgery.
11

Corneo-scleral Laceration Repair

This wet lab focuses on the surgical management of corneoscleral Laceration Repair

Learning Objectives

6 items
  • Recognize and explore the full extent of a corneoscleral wound
  • Restore limbal anatomy and select appropriate sutures for cornea and sclera
  • Achieve good corneal wound apposition while minimizing tissue distortion
  • Close an irregular scleral rupture extending posteriorly
  • Manage simulated iris and vitreous prolapse without tissue incarceration
  • Reform the globe and confirm a watertight final closure
12

SBK Lasik Flap Creation

A structured, trainer-led module focused on safe, reproducible creation of a thin LASIK flap using a mechanical microkeratome. The session emphasizes planning, suction and docking, controlled microkeratome passage, flap handling, recognition of abnormal cuts, and appropriate stop points.

Learning Objectives

8 items

By the end of the station, the trainee should be able to:

  • Describe the purpose and defining characteristics of an SBK flap and distinguish flap thickness from residual stromal bed planning.
  • Perform a pre-cut safety check and identify factors that may alter flap diameter, hinge geometry, or cut quality.
  • Assemble and inspect the microkeratome system according to the device IFU.
  • Center and apply the suction ring, confirm stable suction, and maintain globe stability.
  • Perform a smooth, uninterrupted forward pass and controlled return pass without forcing the device.
  • Inspect the flap immediately after creation and recognize incomplete, irregular, buttonhole, free-cap, epithelial, or interface problems.
  • Handle and reposition the flap atraumatically while preserving orientation and hinge integrity.
  • State when the procedure should be stopped rather than attempting to complete an unsafe flap.
EgSCRS 2026 Wet & Dry Lab

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