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Bone implant contact (BIC) was measured using Infinity Analyze software.
The β-titanium alloys have recently become important in bone implant applications.
Thus, the proposed submicroporous Ta2O5 coating on a Ti surface has considerable potential for bone implant applications.
The created surface nanoporosity on β-type Ti25Nb25Zr alloy has a high potential for bone implant applications.
The identified surface and subsurface strain concentrations were a manifestation of load transferred to bone through bone implant contact based on bone implant geometry, quality of bone, implant placement, and implant design.
The implant design affects the magnitude of stresses and their impact on the bone implant interface.
Similar(40)
The electronic mobility-testing device provided reproducible data related for the bone-implant complex [11].
These changes have aimed to increase bone-implant surface connectivity and accelerate healing.
The bone-implant-constructs were subjected to static and cyclic tests.
More importantly, both the new bone formation and bone-implant contact rate were increased at bone-implant interfaces at 26 weeks and 52 weeks post-implantation.
The mechanical integrity of the bone-implant system is maintained by the process of bone remodeling.
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