Surface

 widen the case adaptable

Sand-blasting + Acid Etching + Glow Discharge Treatment

Osseointegration

Early bone formation and strong osseointegration are realized by microstructure on surface, controlled in nanometer level, and glow discharge treatment (GDT).

2 surface textures

2 types of surface textures (SAG / BiO) are available for PLATON Implant system and they are selectable in accordance with cases.

                                                         Hydroxyapatite film coating

Active integration

                                                              Early bone formation at an early insertion stage is accelerated by osteoconductive property of hydroxyapatite. 

2 surface textures

2 types of surface textures (SAG / BiO) are available for PLATON Implant system and they are selectable in accordance with cases.

Sand-blasting + Acid Etching + Glow Discharge Treatment

Osseointegration

Early bone formation and strong osseointegration are realized by microstructure on surface, controlled in nanometer level, and glow discharge treatment (GDT).

Hydroxyapatite film coating

Active integration

Early bone formation at an early insertion stage is accelerated by osteoconductive property of hydroxyapatite.

About "BiO”

Our Unique Technology / Thin-Film HA Coating “BiO”

Concept . Active integration

Whole new active integration implant promotes early stage osseointegration by hydroxyapatite osteoconduction ability <Bio-integration>, and integrates titanium and bone directly as thin-film hydroxyapatite is absorbed and replaced by bone < Osseointegration >. This is what we call “Active integration”.

Feature 1. 1~5μm of thin-film HA coating

By coating HA with a thin film, the HA tracking ability of titanium elasticity is improved and there is few risk of cracking or peeling of the HA coating layer in vivo.

Hydroxyapatite layer is absorbed and replaced in the medium to long-term after being involved in bone formation in the early phase of implantation.

This greatly reduces the risk of infection from the HA layer.

Feature 2. Low temperature coating by thermal decomposition method

Compared with other HA coating methods, coating is performed at a much lower temperature, so modification and degradation of titanium (base material of fixture) and hydroxyapatite does not occur.

Feature 3. Two-layered coating with calcium titanate and HA

①Calcium titanate  CaTiO3

It acts as a binder for fixture base titanium and HA. It has a very strong chemical bond with both titanium and HA due to the mixed composition of calcium and titanium oxide.

②Hydroxyapatite  HA

The low temperature firing by thermal decomposition enables coating of highly crystalline hydroxyapatite without denaturation and separation of calcium and phosphorus components that are effective for bone condition.

Feature 4. High adaptability

Due to its high osteoconduction ability, BiO is effective in cases such as ” lack of initial fixation at the time of implantation” and “presence of minor bone defects”.

PLATON JAPAN Co., Ltd.

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