Ceramic dental implants offer clear biological and esthetic advantages. However, long-term mechanical reliability remains a critical factor in clinical decision-making.
CeraRoot® ceramic implants have been rigorously evaluated according to the internationally recognized ISO 14801:2016 fatigue testing protocol to verify mechanical endurance under simulated worst-case clinical conditions.
Mechanical fatigue resistance is a primary determinant of long-term implant survival. CeraRoot® implants are engineered to provide structural stability across anterior and posterior indications, supporting predictable long-term clinical outcomes.
All testing was performed in accredited external laboratories under standardized ISO worst-case configurations.
This configuration represents a worst-case loading scenario as defined by ISO 14801 and is widely recognized as the benchmark for evaluating endosseous dental implant fatigue performance.
ISO 14801 dynamic endurance values reported for zirconia implant systems demonstrate a clear dependence on diameter and design configuration.
As shown in the comparison chart CeraRoot 34 demonstrates higher dynamic strength values compared to commercially available zirconia systems of similar diameter.
Based on published ISO 14801 data, CeraRoot® 34 demonstrates higher reported dynamic strength values compared to Straumann PURE 4.1 mm and Z-Systems 4.0 mm implants tested under comparable ISO configurations.
CeraRoot® implants are manufactured under strict quality control processes in compliance with ISO 13485.
Mechanical risk scenarios, including worst-case loading conditions, are incorporated into the product risk management file in alignment with ISO 14971 and ISO 14801 testing protocols.
This integrated validation approach ensures that mechanical reliability is not only demonstrated through standardized laboratory testing but is also systematically incorporated into product development, verification, validation, and post-market risk management activities.
CeraRoot® ceramic implants combine validated ISO 14801 mechanical endurance testing with long-term clinical experience and structured risk management.
The mechanical performance demonstrated under standardized ISO worst-case conditions, combined with long-term clinical validation and structured risk management, supports the suitability of CeraRoot® implants for routine clinical use in both anterior and posterior regions.
We invite you to visit our eShop to place orders online: https://store.ceraroot.com/
I am a dental professional.