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EK NH System

Superior hydrophilicity for enhanced Osseointegration.

Our ET NH Implant from our ET system combines Sand-blasted and Acid-etched (SA) surface, as well as a bio-compatible titanium build.

Produced by our in-house research and development team, Hiossen Implant continues with the main goal of providing safe, effective and high-quality implants to dentists across the globe.

Hiossen NH Surface Treatment

Faster Bone Healing. Improved Osseointegration.

Hiossen’s ET NH (Nano-hydrophilic) provides an unique surf ace treatment that features a hydrophilic SA combined with a low crystalline Nano-HA. This super hydrophilic NH surface helps ensuring optimal treatment outcomes with every implant you place on any type of bone, providing faster bone healing and improved osseointegration.The super-hydrophilic surface improved wettability, significantly increasing blood adhesion. During the r emodeling phase, the nano ap atite coating was absorbed and the ne wly formed bone w as integrated into the S A surface. The results of this study demonstrate that Hiossen ETIII NH Implant gr eatly improves the healing process and supports functional loading after approximately four weeks.

Benefits compared to an SA implant and hydrophilic traits include:

SA Surface
NH Surface
39%
Significant Improvements to BIC
The super hydrophlic bioresorbable apatite increases Bone t o Implant Contact (BIC) by 39% compared to SA.
Hydrophobic (1 minute after blood immersion)
Super Hydrophilic (1 minute after blood immersion)
12%
Super Hydrophilic
12% increase in platelet adhesion (better initial osseointegration) and a 12% increase in cell differentiation.
Around 50 nm
Around 10 nm
Ultra Thin Nano-Coatin
Bioresorbable apatite coating is 10 nanometers thick. Thickness of coating layer 5,000 : 1
After 2 weeks (Coating layer is present)
After 6 weeks (Coating layer is absorbed)
Bioresorbable apatite
Bone forms directly to the SA surface as the apatite layer is resorbed during osseointegration.

Source: Osstem Implant Internal Research.

Highly Predictable Success Rates

This prospective clinical study conducted in 2018 shows the ISQ (Implant Stability Quotient) measurement for four weeks after implant placement using Hiossen ETIII NH Implant. The following table shows the mean ISQ values of implants placed on the maxilla and mandible during the clinic al study period. No implant failure or complication occurred. The high ISQ value of over 75 from implant placement indicates strong initial stability after implant placement. Throughout the osseointegration period of four weeks, the mean ISQ value improved with no stability drop.
The super-hydrophilic surface improved wettability, significantly increasing blood adhesion. During the r emodeling phase, the nano ap atite coating was absorbed and the ne wly formed bone w as integrated into the S A surface. The results of this study demonstrate that Hiossen ETIII NH Implant gr eatly improves the healing process and supports functional loading after approximately four weeks.

ISQ values during the study period

  Implant Placement Week 1 Week 2 Week 3 Week 4
Maxilla 75.1 / 6.2 76.2 / 5.6 76.9 / 4.8 77.1 / 5.1 78.4 / 5.3
Mandible 79.5 7 6.4 80.5 / 6.3 80.7 / 6.4 81.7 / 5.2 82.6 / 4.8
Total 78.3 / 6.6 79.3 / 6.3 79.7 / 6.2 80.4 / 5.5 82.4 / 5.3

Yong-Jin Kim, Marco Tallarico. (Evaluation of the implant stability quotient for early-loaded implants with a new hydrophilic surface. EDI Journal. 2018)

Highly Predictable Success Rates

This prospective clinical study conducted in 2018 shows the ISQ (Implant Stability Quotient) measurement for four weeks after implant placement using Hiossen ETIII NH Implant. The following table shows the mean ISQ values of implants placed on the maxilla and mandible during the clinic al study period. No implant failure or complication occurred. The high ISQ value of over 75 from implant placement indicates strong initial stability after implant placement. Throughout the osseointegration period of four weeks, the mean ISQ value improved with no stability drop.

The super-hydrophilic surface improved wettability, significantly increasing blood adhesion. During the r emodeling phase, the nano ap atite coating was absorbed and the ne wly formed bone w as integrated into the S A surface. The results of this study demonstrate that Hiossen ETIII NH Implant gr eatly improves the healing process and supports functional loading after approximately four weeks.

Highly Predictable Success Rates

This prospective clinical study conducted in 2018 shows the ISQ (Implant Stability Quotient) measurement for four weeks after implant placement using Hiossen ETIII NH Implant. The following table shows the mean ISQ values of implants placed on the maxilla and mandible during the clinic al study period. No implant failure or complication occurred. The high ISQ value of over 75 from implant placement indicates strong initial stability after implant placement. Throughout the osseointegration period of four weeks, the mean ISQ value improved with no stability drop.

The super-hydrophilic surface improved wettability, significantly increasing blood adhesion. During the r emodeling phase, the nano ap atite coating was absorbed and the ne wly formed bone w as integrated into the S A surface. The results of this study demonstrate that Hiossen ETIII NH Implant gr eatly improves the healing process and supports functional loading after approximately four weeks.

Benefits of the ET NH Implant System

With our ET NH Implant, you and your patients are given several benefits due to its unique nanolayer of bio-resorbable apatite coating, which has super hydrophilic properties for more successful, simple, and a predictable implant healing.

Faster bone
Healing

The super hydrophilic NH surface treatment helps ensuring optimal treatment outcomes with every implant you place on any type of bone.

Improved Osseointegration
in early stage

Provides more blood contact with the increased sandblasted acid-etched (SA) surface area, so it can start to clot faster.

Excellent Response
and initial stability

The same clinically effective SA surface, but enhanced with a nano-layer of bioresorbable apatite with super hydrophilic properties.

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