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Application Techniques


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MI Mini implant system provides a solution for excessively resorbed jaw, narrow teeth range and insufficient rooth range. Mode Mini implants which are used without touching the flap were designed as O-Ball with Ø2.2, Ø2.5 and Ø2.9 diameter for removable prosthesis restoration.

O-Ball Mode Mini Implant

O-Ball Mode Mini Implant provides quick loading onto the O-ring ball attachment region for removable prosthesis restoration. If the prosthesis is placed correctly, the excessive load over the gingiva is prevented. The retain which provides vertical flexibility resists the natural lifting force. O-Ball superstructure is designed for overdenture prosthesis.

Ø 2.2  : H  10 / 12 / 14 mm
Ø 2.5  : H  10 / 12 / 14 mm
Ø 2.9  : H   8 / 10 / 12 / 14 mm

Titanium Nitrite (TiN) Technology

All the dual stabilized crown/bridge O-Ball and dual phase implants are covered with titanium nitrite to get the best esthetic result. By the TiN technology, surface friction coefficient is decreased so that patients take advantage.

Conical Design that Imitates the Teeth Anatomy

Conical root form structure with its wide coronal and narrowing root structure allow an easy application without damaging the jaw bones and anatomic formations.

Micro-Thread Minimizing Cortical stress

Micro threads in the coronal region reduce the pressure in the cortical region so that a resistance is created against resorption in implant neck region. The implant neck region small thread design Micro Thread allows optimal force distribution and reduces the amount of tension. In the cortical bone, micro-thread prevents the contamination and for the esthetic applications, micro-thread provides the force balance on the implant-bone contact. 

The Notche

The Notche form stimulates the bone grown so that a lock is occured between bone and implant. Moreover, the notche structure allows optimum bone-implant integration during the immediate loading of implant.

Optimum Primer Stable Thread Part

Thread design that distributes  the marginal forces allows compressive load transfer and optimum bone-implant integration. By its special design, it allows immediate loading and more bone formation.

Compact Bone Tissue Apex

Especially for the compact bones, implant apex provides easy loading.


Nowadays, Calcium phoshate is approved as highly bioactive in the scientific literatüre and the surface with CaP component was preferred by global brands as new process trend. By the excellent reaction between calcium ions and bone tissue,it provides perfect bone-implant contact during the optimum osseointegration process.
By the embeded CaP which stimulates cellular function to implant surface, a very strong CaP-bone connection is occured. Microblast concept, BCP granules and hydrosoluble polymers are perfectly bioactive and that’s why act like bone tissue.
Hyroxyapatite Caicium Phosphate ceramics consisted of hydroxyapatite and tricalcium phosphate is a major biomaterial in the dental field. Calcium phosphate looks like bone minerals. Mode Implant surface is roughened with biocompatible BCP (Bicalcium phosphate) with %65 HA to obtain homogen structure by the micro blast technology.
Mode Implant surface which is roughened with BCP (Bicalcium phosphate) containing %65 HA by micro blast technology besides strong osseointegration, by mechanic fixation it provides osseointegration in a short time.
At the end of each process, Mode Implant rougness value is measured and guaranteed between 1,4~1,8 by CNC micro blast process. Surface roughness of each implant is %100 measured after all surface procedures. Every implant models are roughened by full auhtomatic CNC surface morphology and measurement device developed by Mode Medikal engineers. Mode Medikal which uses %100 biocompatible pure calcium phosphate to roughen without any acidic material.
BCP® bioceramics consists of a mixture of hydroxyapatite (HA) and ß-TCP (beta-tricalcium phosphate). It comes in the form of abrasive particles.Micro sandblasting the implant surface with BCP® particles creates a rough, biocompatible surface. Then, the implant is subjected to a mild acid treatment, and thoroughly rinsed and dried.
HA Osteoblastic BCP Surface Morphology
CaP Stimulating Cellular Function
Bone Friendly HA Calcium Phosphate Morphology
A Perfect BIC Bone-Implant Relation
Homogen Surface Morphology
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