

Featuring:

Watch Adil El Maftouh insightfull presentation on the corneal assysmetry induced by dry eye syndrome. During this webinar, we explored how optimizing indications in corneal refractive surgery or with premium implants is a critical challenge, ensuring a high level of precision in postoperative outcomes.
Dry eye induces remodeling of the corneal epithelium, which affects keratometry and topographic appearance, potentially leading to asymmetries in corneal topography.
The multimodality of the Solix OCT, including epimapping, combined with corneal topography, enables the monitoring of all variations induced by ocular surface disorders related to dry eye.
“As our treatments for ocular conditions are becoming more readily available, it is critical that eyecare providers have the appropriate technology to maintain quality patient care. Often this means finding additional space for more and more devices. The addition of topography software module upgrade on the Optovue Solix device offers an accurate, easy to use solution to this problem. Our clinic can now obtain accurate topographic information faster than with any other topographer at our disposal, and we are able to do so at the same machine we image for screening of retinal conditions and optic nerve anomalies. The amount of data given by the Optovue Solix Topography module is unmatched. In a single second we can obtain information regarding the anterior corneal surface, posterior corneal surface, corneal thickness, and epithelial mapping all of which help us better serve our patients and ensure the highest level of patient care while maintaining clinical time and space efficiency.”
Nathan Lighthizer, OD, FAAO
Associate Professor and Associate Dean at Northern State University – Oklahoma College of Optometry
Aubry Tackett, OD
Assistant Professor at Northern State University – Oklahoma College of Optometry
Solix | Solix Essential | |
Technology | ||
| Transverse Resolution(15μm) | ✔️ | ✔️ |
| Scan Speed | 120kHz | 120kHz |
| Axial Resolution(5μm) | ✔️ | ✔️ |
| iWellness scan | ✔️ | ✔️ |
| AngioVue single scan for structural & vascular OCT | ✔️ | ✔️ |
| AngioVue OCT-A with enhanced metrics | ✔️ | ✔️ |
| Multi-volume averaging, SSADA | ✔️ | ✔️ |
| 3D PAR 2.0 | ✔️ | ✔️ |
| DualTrac – Motion Correction Technology (MCT) | ✔️ | ✔️ |
| Pixel x Pixel deviation mapping | ✔️ | ✔️ |
| AngioWellness scan | ✔️ | ✔️ |
Anterior Segment | ||
| Anterior Radial (12mm) | ✔️ | ✔️ |
| Angle scan | ✔️ | ✔️ |
| Epithelial, stromal, and corneal thickness mapping | ✔️ | ✔️ |
| Pachymetry | 10mm | 10mm |
| Angle scan and analysis with 4-up display | ✔️ | ✔️ |
| External color camera | ✔️ | |
| FullRange Anterior segment 18 x 6.25mm | ✔️ | |
| Exterior IR lid imaging | ✔️ | |
| Pachymetry, Epithelial Thickness, and Stroma Trend Analysis | ✔️ | ✔️ |
| FullRange Anterior Chamber auto caliper placement | ✔️ | |
| Side-by-side pachymetry, epithelial thickness, and stroma maps | ✔️ | ✔️ |
Glaucoma | ||
| 3D Disc Cube | ✔️ | ✔️ |
| GCC Analysis | ✔️ | ✔️ |
| Nerve Fiber Layer Analysis | ✔️ | ✔️ |
| Comprehensive single eye and OU Reports | ✔️ | ✔️ |
| RPC density map and values | ✔️ | ✔️ |
| 100 μm RNFL circle at 3.45mm | ✔️ | ✔️ |
| 3 Times Repeatability and Reproducibility (R&R) | ✔️ | ✔️ |
Retina | ||
| EnFace | 12 x 12 mm | 12 x 12mm |
| 3D Retina Cube | ✔️ | ✔️ |
| Radial Line | ✔️ | ✔️ |
| 512 OCT-A scans | ✔️ | ✔️ |
| 3D vessel rendering | ✔️ | ✔️ |
| AngioVue QuadMontage | ✔️ | ✔️ |
| Retinal Thickness Map (Widefield OCT-A 12 x 12mm, 9 x 9mm) | ✔️ | ✔️ |
| Fundus Camera | ✔️ | |
| FullRange Retinal scan 16 x 6.25mm | ✔️ | |
Topography (optional feature) | ||
| Topography (Anterior and Posterior corneal + Tomography) | ✔️ | ✔️ |
| Zenike Values with High order and Low order aberrations | ✔️ | ✔️ |