Best technology
Whether you undergo a laser eye treatment or a lens replacement procedure, the technology used plays a crucial role in safety, precision, and the final outcome. That is why at Visus Eye Clinic, we always treat you with equipment of the highest quality.
We continuously invest in the newest generation of laser systems, imaging technology, and surgical techniques. This enables us to perform every treatment, from ReLEx SMILE Pro to IntraLasik and from phakic  lenses to lens replacement, according to the highest international standards.
This allows us to offer you:
- Maximum accuracy during diagnostics and treatment
- Optimal safety through modern, well-controlled technology
- The best visual results, tailored to your eyes and lifestyle
- Comfortable procedures with fast recovery
Below you will find an overview of the advanced equipment we use for both laser and lens treatments.
For diagnostic examinations, we use the latest technological standards
For measurements, we use the most precise equipment available
For treatments, we use the latest generation of equipment
Visumax 800 Femtosecond Laser
The VisuMax 800 is one of the most advanced femtosecond lasers used in refractive surgery and is renowned for its exceptional precision, speed, and patient comfort. This laser enables the creation of extremely fine, controlled corneal incisions, allowing procedures such as SMILE and IntraLasik to be performed safely and predictably.
Its cutting-edge technology ensures that the cornea is prepared with optimal accuracy. This results in highly consistent visual outcomes, a very low risk of complications, and a noticeably faster and more comfortable recovery process for patients.
The VisuMax 800 is suitable for correcting myopia (nearsightedness), hyperopia (farsightedness), and astigmatism. As such, it is considered one of the most modern and reliable laser systems available in refractive surgery.
Schwind Amaris 1050 Rs
The Schwind Amaris 1050RS is the fastest excimer laser in the world. For Visus Eye Clinic, this was a key reason to be the first clinic in Europe to introduce this technology. The combination of exceptional speed and precision makes this laser a top choice for safe and predictable laser eye treatments.
With the Amaris 1050RS, the cornea can be reshaped with extreme accuracy. The ophthalmic surgeon determines the required correction in advance, after which the laser sculpts the cornea with micrometric precision into the desired shape. The surgeon monitors the process continuously, ensuring a highly accurate correction of your refractive error.
What sets this laser apart is its unmatched speed. Because the Amaris operates up to thirty times faster than a conventional excimer laser, treatment time is significantly reduced and the risk of corneal dehydration during the procedure is minimized. A faster treatment means a lower risk of complications, more predictable outcomes, and greater comfort for the patient.
With the Schwind Amaris 1050RS, Visus Eye Clinic intentionally chooses the highest level of technology—ensuring optimal safety and precision.
Catalys Precision Laser System
At Visus Eye Clinic, you can undergo your lens replacement procedure with the Catalys Precision Laser, one of the most advanced femtosecond lasers in modern ophthalmology. This laser combines exceptionally precise cutting technology with advanced 3D imaging, making the procedure safer, more consistent, and even better tailored to your eyes.
The Catalys creates a highly detailed 3D scan of the eye, visualizing factors such as depth, curvature, and the exact position of the lens. Based on this information, the surgeon can create a fully individualized treatment plan that perfectly matches the anatomy of your eye.
During the procedure, the laser performs the necessary incisions and preparation for the lens replacement with exceptional precision—far more accurately than is possible manually. Thanks to this level of precision, the procedure is smoother, surrounding tissue is better preserved, and the eye typically heals more quickly.
The Catalys Precision Laser therefore provides a high degree of customization and contributes to predictable, long-lasting visual results that you will benefit from for many years.
Zeiss Cirrus OCT 5000
During an OCT examination (Optical Coherence Tomography), highly detailed cross-sectional images of the structures within the eye are created, particularly of the retina. This imaging technique uses light waves and makes it possible to visualize the individual layers of the retina—details that cannot be seen with a standard eye photo or microscope.
These precise images allow subtle or early abnormalities in the retina to be detected at an early stage. OCT is used to establish a diagnosis, monitor the progression of an eye condition, and determine whether treatment is necessary or effective.
OCT is a painless, quick, and completely contact-free procedure. It is commonly used when macular degeneration, macular edema, retinal tears, or glaucoma are suspected, and it is also part of the preoperative screening for laser eye treatments or lens surgery. Thanks to the high-resolution imaging, OCT provides the ophthalmologist with essential information needed to deliver safe and appropriate care.
Zeiss IOL MASTER 700
The IOLMaster 700 is an advanced optical biometer that measures the length of the eye and various other ocular parameters with exceptional accuracy. These measurements are essential for calculating the correct power of an intraocular lens (IOL) for lens replacement or cataract surgery.
This device is regarded as one of the most reliable biometers in modern ophthalmology. The IOLMaster 700 uses swept-source OCT technology, allowing the entire eye to be imaged along its axial length. As a result, measurements are faster, more precise, and less dependent on patient cooperation. The method is completely contactless and comfortable.
Thanks to this high level of accuracy, the ophthalmologist can select the most suitable artificial lens for each individual patient, leading to predictable visual outcomes and reduced dependence on glasses after treatment. The IOLMaster 700 therefore plays a crucial role in delivering high-quality lens replacement surgery.
Cassini
The Cassini is an advanced diagnostic device that allows the cornea to be mapped with exceptional accuracy. Instead of traditional Placido topography, the latest generation Cassini uses multicolour LED topography and aberrometry, enabling reliable measurement of both the front and back surfaces of the cornea. This makes the system particularly valuable for precise analysis of corneal shape and curvature.
With the Cassini, corneal abnormalities such as astigmatism, keratoconus, and other irregularities can be detected early and with great precision. The device provides highly detailed corneal maps, making it an essential tool for diagnosing, monitoring, and planning treatments.
In refractive surgery, the Cassini plays an important role. Its measurements are used in the preparation of laser eye treatments and lens replacement procedures, including the precise positioning of toric implant lenses. The Cassini can also be used after treatment to evaluate the cornea and monitor recovery.
With its high level of accuracy and stability, the Cassini contributes to optimal treatment planning and predictable visual outcomes.
ZEISS CALLISTO
The ZEISS CALLISTO is an advanced navigation system designed to make lens procedures even more precise and safe. During a refractive or cataract surgery, the system projects digital markers directly into the surgeon’s field of view. This eliminates the need for manual marking and allows the implant lens to be positioned with exact accuracy.
CALLISTO eye operates completely contact-free and uses data from preoperative measurements, such as those obtained with the IOLMaster. This information is seamlessly translated into real-time guidance during the procedure, enabling toric and multifocal lenses to be centred and aligned with exceptional precision. This directly contributes to sharper and more predictable visual outcomes.
The system is used during our lens replacement procedures. It supports the ophthalmic surgeon throughout the operation, increases the accuracy of lens positioning, and helps achieve the best possible visual result.
ZEISS OPMI Lumera 700
The ZEISS OPMI Lumera 700 is a high-quality surgical microscope widely used in ophthalmology. It is renowned for its exceptional optical performance and advanced illumination technology, providing the surgeon with an ultra-sharp, high-contrast view of the eye’s delicate structures—essential for precise procedures such as lens replacement surgery.
The system offers a stable, bright, glare-free image, features motorized zoom and focus, and can be positioned smoothly for optimal ergonomics. This allows the surgeon to work with extreme accuracy, even during longer procedures.
The integrated HD video technology enables live viewing and documentation of the surgery, which is highly valuable for education, quality assurance, and clinical reporting.
With the OPMI Lumera 700, Visus Eye Clinic ensures maximum precision, safety, and predictability during every intraocular procedure.
ZEISS SL 800
The ZEISS SL 800 is an advanced slit-lamp microscope used to examine the structures of the eye with great precision. This instrument belongs to the highest quality standard in ophthalmology and provides an exceptionally sharp, stable, and high-contrast view of the cornea, lens, conjunctiva, and anterior chamber.
Thanks to its excellent optics and refined illumination, the ophthalmologist can accurately assess even the smallest abnormalities. This makes the SL 800 indispensable for pre-examinations before laser eye treatments, lens replacement surgery, and for evaluating overall eye health.
Its ergonomic controls and smooth adjustment options allow the microscope to be positioned with great precision, enhancing both patient comfort and clinical accuracy.
In short, the ZEISS SL 800 is a high-quality diagnostic microscope that plays a crucial role in safely and accurately assessing your eyes.
i.Trace
Corneal topography with the i.Trace maps in detail how light travels through the eye. The device measures both the optical quality of the cornea and the performance of the natural lens, providing a complete and highly detailed picture of the eye’s entire optical system.
Because the i.Trace can precisely distinguish which part of a refractive error originates from the cornea and which part from the lens, it is a valuable tool in determining the most suitable treatment option. It helps guide the choice between laser eye surgery, a phakic ICL lens, or a lens replacement procedure, and is essential in planning toric and multifocal implant lenses. The i.Trace can also analyze optical symptoms such as halos, glare, or reduced contrast sensitivity, and it can detect early lens opacities.
Thanks to these detailed insights, treatment can be tailored more accurately to each individual patient. This results in sharper vision, predictable outcomes, and a reduced likelihood of residual refractive error after the procedure.
Schwind Sirius
The Schwind Sirius is an advanced diagnostic system that combines two powerful technologies: rotating Scheimpflug tomography and Placido topography. This combination provides a complete and highly accurate overview of both the corneal surface and the deeper corneal layers.
This device plays a central role in assessing suitability for laser eye treatment or lens implantation. The Schwind Sirius measures corneal thickness, curvature, irregularities, and risk indicators for conditions such as keratoconus. Thanks to its high resolution and level of detail, even subtle abnormalities can be detected at an early stage.
For patients, this means that treatment can be planned not only more safely but also more precisely. The Sirius supports the ophthalmologist in determining the optimal treatment strategy and contributes to predictable and reliable outcomes.
E-Eye
Neurological research shows that E-Eye, through its targeted infrared pulses, can induce a mild and controlled increase in temperature in the tissues surrounding the nerve structures that control the eyelids. These subtle temperature changes influence the activity of nerve fibres, including branches of the parasympathetic nervous system connected to the Meibomian glands.
This nerve stimulation triggers a cascade of neurotransmitters that act directly on the Meibomian glands. As a result, the glands become activated, improving both oil production and their natural contraction movements. The outcome is better-functioning meibum secretion: an essential factor for maintaining a stable and healthy tear film.