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ZinicMT, balance and stability for your patient's well-being. | Exhibitor on the IDS - International Dental Show 2023

ZinicMT, balance and stability for your patient's well-being.

With an internal hexagonal connection, the physical and functional details of Zinic MT are designed to achieve optimal primary stability to ensure the success of the osseointegration process. The hexagonal shape of the connection also guarantees the proper fit of the abutment to the implant and a connection resistant to lateral loads, as well as excellent aesthetic results.   
Thanks to its mechanical and surface factors, ZinicMT provides:   
· Improvement of the distribution of longitudinal forces (hexagon depth of 1.5mm).  
· Reduction of bacterial infiltration (conical bevel).  
· Reduction of micro-movements (conical friction).  
· Soft tissue formation and emergence profile shaping (Platform Switch).   
Its cortical area is shaped by a 0.4mm mechanised ring that allows to raise the prosthetic gap according to the crestal bone in medium-thick biotypes and avoiding to expose the treated surface in irregular crest.   
In addition, its silhouette, which is similar to the natural root of the tooth, allows the implant to adapt completely to the abutment and provides an impeccable seal.   

For which cases is ZinicMT indicated?   
ZinicMT is especially indicated for use in immediate or early loading and for cases of convergence or apical collapse. Its conical design facilitates low-density bone shaping and, due to being thinner than cylindrical implants, Zini MT is suitable for replacing practically any dental piece.   
The use of ZinicMT is recommended in the following clinical situations:   
· Soft bone (type IV), where primary stability is difficult to obtain.  
· Immediate placement in post-extraction sockets.  
· Spaces with converging roots or adjacent teeth.  
· Simultaneous graft and implant placement.  
· Implant placement in sinus lift procedures.  
· Aesthetic areas where bone preservation is the key.  
· In bone structures lacking appropriate physical properties.
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