STUDIES

SCIENTIFIC WHITEPAPER
4 YEAR RESULTS
TRI® MULTI-CENTRE POST-MARKET CLINICAL FOLLOW-UP STUDY

TRI® is performing an official post market clinical follow-up (PMCF) study in alignment with it’s notied body. The study aims to conduct an analysis of critical implant performance criteria of TRI® implants by multiple centres around the globe over several years. The TRI® PMCF study (initiated 2014) is an ongoing study and expanded every year. Results are published at the end of every year. 5 year results with > 120 implants will follow end 2018.

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PRIMARY STABILITY ASSESSMENT OF VARIOUS DENTAL IMPLANT SYSTEMS
THE SOPHISTICATED BIOMECHANICAL DESIGN OF TRI® IMPLANTS (TRI® BONEADAPT) IS DESIGNED TO ACHIEVE HIGH PRIMARY STABILITY.

A high primary stability of dental implants is a key success factor especially with modern treatment concepts such as early or immediate loading. An ongoing in vitro study* evaluates the primary stability of different implants**. The implants were inserted into artificial bone using a torque gage to determine the maximum insertion torque. The table above shows the measured insertion torques from the tested implant systems***.

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ACHIEVE EXCELLENT RESULTS WITH THE TRI® SBA SURFACE
MEDIUM-ROUGH LARGE-GRIT SANDBLASTED AND ACID ETCHED SURFACES (SUCH AS THE TRI® SBA) OFFER SCIENTIFICALLY PROVEN BEST RESULTS.

TRI® is performing an official post market clinical follow-up (PMCF) study in alignment with it’s notied body. The study aims to conduct an analysis of critical implant performance criteria of TRI® implants by multiple centres around the globe over several years. The TRI® PMCF study (initiated 2014) is an ongoing study and expanded every year. Results are published at the end of every year. 5 year results with > 120 implants will follow end 2018.

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TRI® PINK
DISCOLORATION OF THE MUCOSA CAUSED BY DIFFERENT RESTORATIVE MATERIALS – A SPECTOPHOTOMETRIC IN VITRO STUDY

The discoloration of the mucosa can be reduced by 46% with TRI Pink anodized titanium compared to raw titanium. The effect is comparable to zirconium. In this in vitro study, measurements are performed on pig jaws with a spectophotometric camera, comparing discoloration resulting from different materials.

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