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DMEqual - Implant Surface Treatment System
The DMEqual System is composed of dental implant and implant accessories. TA4 pure titanium implant with the acid etching and sand blasting treated surface form a stable osseointegration.
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- Partical Edentulism
- Total Edentulism
- Machined collar with Mircro Roughness: facilitate the attachment of soft tissues to form a tight protective layer
- Implant with parallel walls: flexible application, suitable for different bone qualities and indications
- Tapered tip: allow double cortical bone fixation and offer high initial stability
- Double lead thread design: ensure higher insertion speed and optimize surgical experience.
- Four-cutting self-tapping flute: achieve good self-tapping effect when the preparation hole is insufficient.
- Built-in platform shifting: prevent soft tissue atrophy and achieve esthetic effect.
- Internal screw connection: high-strength internal screw assures stable connection
- SLA surface & Groove design: promote osseointegration and improve stability
- 12° conical connection: disperse stress distribution, with close seal to prevent bacterial reproduction.
- Hexagonal interlocking: improve mechanical strength and increase prosthetic options.
DMEqual surface treatment:
- DMEqual implant surface treatment technique is an industry-university-research project in cooperation with Xiamen University and has already obtained national invention patent. The technique is different from the traditional sandblastd, acid-etched implant surface treatment technique.
- The surface treatment adopts sand blasting with miced particle size sand to construct a special uniform multi-level micron morphology with deep holes on the flat surface, and the morphological structure is more complicated, thereby increasing the contact area between the implant and the bone tissue.
- No sharp edges, a multi-level micron active surface, and a smaller contact angle.
- The surface activation treatment is performed on the multi-level micron surface by high-temperature heating, and a thin crystalline titanium dioxide layer is formed on the surface by oxidation, which greatly reduces the contact angle and at the same time facilitates the biomineralization on the surface of the material after implantation. It is more conducive to achieving short-term load and long-term osseointegration of the implant.