A modern prosthetic restoration made from monolithic zirconia, combining high strength with an aesthetic appearance.
Zirconia
A modern prosthetic material offering exceptional strength and aesthetics. Thanks to digital CAD/CAM design and precision milling, it provides excellent fit, high durability, and a natural appearance of prosthetic restorations. Zirconia is suitable for both anterior and posterior regions, offering biocompatibility as well as resistance to staining and wear.
The core, made from milled zirconia, provides durability and a precise fit, while the porcelain layer enables exceptional color depth, natural translucency, and individual characterization.
E.MAX
Premium lithium disilicate glass-ceramic, valued for its exceptional aesthetics and ability to faithfully reproduce the appearance of natural teeth. Thanks to its high translucency, excellent optical properties, and precision fabrication using CAD/CAM technology, e.max restorations are an ideal choice wherever a natural aesthetic result is the priority.
An e.max crown or veneer is a full-ceramic prosthetic restoration made from lithium disilicate ceramic, valued for its exceptional aesthetics and natural optical properties.
Porcelain-layered e.max crowns and veneers are premium solutions designed for the most demanding aesthetic reconstructions. The lithium disilicate ceramic core provides a stable foundation, while hand-layered porcelain allows exceptional color depth, natural translucency, and individual characterization of each tooth.
PMMA
PMMA (polymethyl methacrylate) is a high-quality material used to fabricate temporary and long-term restorations. Thanks to CAD/CAM technology and precision milling, it provides excellent fit, aesthetics, and wearing comfort. It is an ideal solution during implant and prosthetic treatment, as well as during bite rehabilitation.
An ideal solution during implant and prosthetic treatment and comprehensive bite rehabilitation.
Provides aesthetics, functionality, and appropriate soft-tissue shaping during the healing and implant treatment period.
Ambarino
A modern premium hybrid material designed for highly aesthetic prosthetic restorations. It combines very good mechanical properties with natural aesthetics and the ability to absorb chewing forces. Thanks to precision CAD/CAM processing, it is an excellent alternative to ceramic in appropriately selected clinical cases.
Prosthetic restorations made from Ambarino® are a modern alternative to traditional ceramics. By combining high aesthetics, very good mechanical properties, and flexibility similar to that of natural tooth tissues, they perform excellently in both aesthetic and functional restorations. Fabricated using CAD/CAM technology, they provide a precise fit and long-lasting wearing comfort.
3D Printing
3D printing technology is an integral part of modern digital prosthodontics. We use professional printers and certified biocompatible materials to fabricate models, surgical guides, and other prosthetic components with the highest precision.
A diagnostic model printed using 3D technology is a precise reproduction of the patient's dentition, created based on an intraoral scan or digital model. The set includes maxillary and mandibular models, serving as an essential tool for diagnosis, treatment planning, and patient communication. Thanks to the high accuracy of the printing process, the models faithfully reproduce anatomy and occlusal relationships.
An aesthetic try-in performed before the final fabrication of the prosthetic restoration. It allows the shape, length, tooth positioning, and smile aesthetics to be evaluated, giving the dentist and patient the opportunity to make any necessary adjustments before finalizing the restoration.
Implant-Supported Restorations
We fabricate modern implant-supported prosthetic restorations using CAD/CAM technology, ensuring the highest precision and an ideal fit. Depending on the clinical indications, we offer single crowns, bridges, and full-arch restorations, selecting the appropriate solution in terms of aesthetics, functionality, and durability.
A custom abutment designed and milled using CAD/CAM technology provides an optimal fit to the patient's clinical conditions. Its individualized design enables an appropriate emergence profile, improved soft-tissue support, and high final aesthetics of the prosthetic restoration. Abutments are made of titanium or zirconia, depending on the clinical indications.
A durable and aesthetic prosthetic restoration intended for the replacement of a single missing tooth. Made from monolithic zirconia using CAD/CAM technology, it provides high strength, a precise fit, and a natural appearance. Depending on the clinical situation, it may be placed on a custom abutment or a Ti-Base and fabricated as either a cement-retained or screw-retained restoration.
A porcelain-layered full-zirconia crown on an implant is a premium solution combining the strength of a milled zirconia core with the exceptional aesthetics of hand-layered porcelain.
An implant bar is fabricated using CAD/CAM technology and precision milling, ensuring an ideal fit to the implants and high manufacturing accuracy. It provides a stable foundation for prosthetic restorations, ensuring even distribution of chewing forces, durability, and wearing comfort. Each bar is individually designed with consideration of the clinical conditions and the implant system used.
CAD / CAM Splints
We fabricate high-quality splints using CAD/CAM technology and modern thermoplastic materials. Digital design and precision fabrication ensure an excellent fit, wearing comfort, and predictable treatment outcomes.
A custom whitening splint is fabricated based on an intraoral scan or the patient's model using CAD/CAM technology. Thanks to its precise fit, it ensures even distribution of the whitening gel, wearing comfort, and effective home-based treatment.
A relaxation splint is a custom-made appliance designed to protect the teeth and reduce the effects of excessive tension in the masticatory muscles.
A retention splint is custom-made based on an intraoral scan or the patient's model using CAD/CAM technology. Its purpose is to maintain the results of completed orthodontic treatment and prevent teeth from shifting. Thanks to its precise fit, it provides high wearing comfort and effective retention.
The Michigan splint is fabricated using CAD/CAM milling from high-quality PMMA discs. Unlike traditional splints made using thermoforming, it is characterized by significantly greater precision, dimensional stability, and an ideal fit to the patient's occlusal conditions. The milled construction provides high durability and predictable treatment outcomes for occlusal disorders and bruxism.
Digital Smile Design
Modern prosthetic and aesthetic treatment planning using digital technologies. Thanks to a diagnostic Wax-up, Mock-up, and silicone keys for the Flow Injection technique, the dentist and patient can evaluate the planned treatment outcome before treatment begins. Digital smile design increases predictability, shortens treatment time, and facilitates communication between the dentist, technician, and patient.
A diagnostic Wax-up is a design of the future restoration created on a model or in a digital environment, allowing the shape, proportions, and function of the future teeth to be planned. It serves as the basis for creating a Mock-up, silicone keys for the Flow Injection technique, and comprehensive aesthetic and prosthetic treatment planning.
A silicone key made based on a diagnostic Wax-up enables the precise transfer of the designed tooth shape into the patient's mouth. The Mock-up allows the aesthetics, proportions, and function of the planned restoration to be evaluated before treatment begins. It is an excellent tool for patient communication and increasing the predictability of the final outcome.
A silicone key made based on a diagnostic Wax-up enables the precise transfer of the designed tooth shape into the patient's mouth using the Flow Injection technique. It provides predictable reproduction of the restoration anatomy, shortens working time, and increases the accuracy of aesthetic composite restorations.
Implant Surgical Guides
We design and fabricate custom implant surgical guides based on intraoral scans (STL) and CBCT examinations (DICOM). Each case is thoroughly analyzed and discussed with the treating dentist to determine the optimal implant position, taking into account anatomical conditions, the planned prosthetic restoration, and clinical expectations. Thanks to digital planning, treatment becomes more precise, predictable, and safer for the patient.
Designed for the placement of one implant.
Designed for the placement of 2–3 implants.
Implant surgical guide for the placement of 4 or more implants.
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