Rose K2 IC Contact Lens – Advanced Solution for Irregular Corneas ✨👁️🔬
The Rose K2 IC contact lens, designed by David Thomas Contact Lenses UK, is an advanced gas permeable (GP) lens tailored specifically for patients with irregular corneas. This specialized lens offers superior optical performance and comfort, making it an ideal choice for conditions such as Pellucid Marginal Degeneration (PMD), Keratoglobus, Post-Graft corneas, and LASIK-induced ectasia. 🏥🔎👓
Innovative Design for Enhanced Fit & Vision 🔬⚡👀
The Rose K2 IC lens features a larger posterior optical zone compared to standard lenses. Its aspheric posterior surface, combined with aberration-controlled optics and reverse geometry para-central fitting curves, ensures optimal vision correction and stability. With a standard diameter of 11.4mm, the lens can be customized up to 12.0mm, offering a precise and personalized fit. 🎯📏🔄
Comprehensive Parameter Range 📊🔢✅
- Base Curve: 5.7mm to 9.0mm (in 0.1mm steps)
- Diameter: 9.4mm to 12.0mm (in 0.1mm steps)
- Power Range: +30.0D to -30.0D (in 0.25D steps)
- Edge Lift Options: Standard, Increased, Double Increased, Decreased, and Double Decreased
- Material: High-oxygen-permeable, customizable options including Boston XO & Menicon Z 🌬️💧🔵
- Price: Per piece (Price may vary)
Material & Oxygen Permeability 🌬️💧🔵
The Rose K2 IC lens is available in high-oxygen-permeable materials, including Boston XO (blue, green, or violet tints) and Menicon Z (blue tint). These materials ensure maximum corneal health and comfort, especially for patients requiring large-diameter lenses. 👁️💙👌
Ideal for Complex Corneal Conditions 🏥🔍📌
The Rose K2 IC lens is expertly crafted to address a variety of irregular corneal conditions, including:
- Pellucid Marginal Degeneration (PMD): Effectively corrects high degrees of against-the-rule astigmatism, commonly associated with PMD. 🔄📉🌀
- Keratoglobus: Offers excellent centration and stability for cases involving significant corneal thinning. 🧐📏🛡️
- Post-Graft (Penetrating Keratoplasty): Helps bridge the graft and host/donor junction for improved postoperative vision. 🩺🔬👁️
- LASIK-Induced Ectasia: Provides optimal support and correction for post-refractive surgery complications. 🔎📉👓
Precision Fitting for Optimal Performance 🎯🛠️👁️
The Rose K2 IC lens is recommended to be fitted using a diagnostic trial lens set, which includes 20 lenses in Boston ES non-UV material. The fluorescein assessment technique allows practitioners to achieve an accurate fit, ensuring both comfort and effective vision correction. 🔬📊✅
Fitting Guidelines 🏥📏🔧
- Base Curve Selection:
- For existing RGP wearers, match the current base curve.
- For new patients, select a base curve 0.2mm steeper than the average K-readings.
- For topography-based fitting, choose a trial lens based on the 4-5mm temporal corneal measurement.
- Central Fit:
- Aim for a light central touch for better corneal health.
- Expect some central pooling in LASIK cases, which is often acceptable.
- Peripheral Fit:
- Ensure a fluorescein band width of 0.5mm – 0.7mm.
- Adjust edge lift accordingly for better tear exchange.
- Lens Diameter Selection:
- Increasing the overall diameter can improve lens stability and location.
- Power Assessment:
- Perform over-refraction using ±1.00D steps, then refine with 0.50D and 0.25D increments.
Fitting Pearl 💡🔎🎯
Adjusting the diameter and edge lift can significantly improve stability and comfort for patients with poor lens location, especially those experiencing inferior displacement. 🔄📌👁️
Why Choose Rose K2 IC? 🎯👓💎
- ✔ Custom-designed for irregular corneas
- ✔ Larger optical zone for enhanced vision
- ✔ High oxygen permeability for corneal health
- ✔ Multiple edge lift options for a tailored fit
- ✔Precision fitting with the diagnostic trial lens set
The Rose K2 IC contact lens brings cutting-edge optical technology to the hands of eye care professionals, offering a reliable and effective solution for even the most challenging irregular corneal cases. 🚀🔬👁️
For professional fitting and consultation, visit an authorized practitioner. 🔍📋✅
Reviews
There are no reviews yet.