
The intraoral scanner system we use in our clinic..
Digital Dentistry
These are dental procedures that utilize intraoral scanners, 3D printers, and CAD/CAM milling systems.
Digital Impression
Images captured by optical scanner—capable of recording thousands of frames per second—are converted into a 3D digital model using advanced software and computer processing.

What Benefits Offered
It provides the most accurate impression possible (at the micron level).
There is no risk of the distortion that can occur with silicone-based impression materials due to various factors. The impression taken in the clinic is transmitted to the laboratory—where the prosthesis will be fabricated—without undergoing any changes.
Upper and lower jaw dental relationships are also captured digitally. Occlusal (bite) issues—a major source of defects and complications in prosthetics—are minimized.
It is easy to perform. Taking impressions is easier for patients with a strong gag reflex.
Since the final prosthesis is fabricated with micron-level accuracy, it offers a high rate of long-term success.
It enhances speed and success for the laboratory (technician) during the fabrication process.
Increased success translates to fewer dental appointments.

Treatmeants Where it is Used
It can be used in all dental procedures requiring impressions, such as zirconium restorations, implant-supported zirconium, smile design, E-max, inlays/onlays, and orthodontic treatments.
In guided implant surgeries, the pre-operative computed tomography (CT) scan is digitally integrated with the digital impression. The resulting surgical guide is placed in the mouth, and the surgical procedure is performed.


3D Printers
This technology is used to create a model from the obtained digital impression in the laboratory.
The model is obtained from photopolymer (UV-curing resin) material.
It had replaced dental plaster, an indispensable part of conventional dentistry.
Just like digital impression, the fact that it leaves no room for error is a great advantage.
Cad Cam
Cad (computer aided design)
Cam (computer aided manifacturing)
The prosthesis to be produced is designed by the technician in a digital environment.
The milling robot fabricates the prosthesis from material blocks—such as zirconia, e.max, and glass-ceramic—with micron-level precision.
