Internal connection structure of bone horizontal implant with 11 ° Mohs taper and internal hexagon
Optimized thread design with ideal S L. A surface
1.5 ° conical implant design with high initial stability
The upper shallow threaded structure has the effect of increasing initial stability on osteoporotic bone
Double helix thread&thread cutting blade design with strong self tapping capability
Good initial stability provides better support for immediate weight-bearing, even for osteoporosis

Excellent initial stability

Bringing you powerful clinical performance and initial stability

The Axiom-Line series by Vistafor suits all bone qualities, excelling particularly in D4 bone (soft). Its tapered screw design optimally condenses unprepared alveolar bone, while the progressive self-tapping threads at the base ensure smooth implantation, reducing trauma and preventing bone necrosis. The midsection’s double-thread design allows for better blood circulation and offers a larger surface area for faster osseointegration. The shallow threads at the top ensure a tight fit with the alveolar bone, creating a stable foundation. This stability ensures long-term implant functionality and minimizes issues like loosening and displacement, offering patients a durable and reliable dental restoration solution.
TiN (titanium nitride) coated substrate
Coatings are beneficial for achieving better aesthetic effects, superior biocompatibility, and reducing inflammation
Aesthetics&CAD/CAM restoration advantages
The inclined shoulder design of the abutment makes it an ideal choice for CAD/CAM zirconia restorations
0 gap
The 11 ° Mohs taper hexagonal connection has better resistance to microbial leakage, ensuring long-term protection of surrounding bone tissue and reducing edge bone loss.
Excellent soft tissue response
The biological S-curve provides seamless appearance and more functional contour representation
DLC (Diamond) coated central screw
The screw strength has increased by 37%, and the surface tension distribution makes the screw less likely to loosen, ensuring long-term stability during repair
Neck micro thread design
Excellent neck micro thread design can effectively reduce stimulation of cortical bone at the edges and decrease bone resorption
High compressive strength
Using cold working titanium imported from Germany, it has better mechanical strength and fatigue resistance than pure titanium. 4.5 diameter implants can be used for grinding teeth without worrying about breakage. The parallel wall of the implant is designed to be thicker, which can better prevent breakage compared to other implant systems. It can be used in most cases to reduce GBR surgery
Trabecular bone pressure dispersion
The special blade type double helix thread design can achieve the best ISQ value. The self tapping design of the blade type thread allows for higher initial stability and gradual bone compression and expansion under any bone density conditions, maximizing resistance to pressure and minimizing shear forces
1.5 ° conical design
High initial stability, more suitable for immediate weight-bearing
Cutting blade design
The three leaf self attacking design ensures good self attacking performance while minimizing bone damage to the greatest extent possible

Visible predictability and treatment success rate

A 2017 prospective clinical study revealed ISQ (Implant Stability Quotient) measurements at 10 weeks post-implantation with implants similar to Vistafor. The table below shows average ISQ values for implants with RBM’s bioresorbable calcium phosphate coating and SLA surface treatment, with no implant failures or complications. An ISO value over 80 post-implantation indicates strong initial stability. During the second week of osseointegration, the SLA average ISO value surpassed the bioresorbable coating and remained ahead, thanks to our SLA hydrophilic surface that improved wettability and significantly increased blood adhesion. The study results highlight the Vistafor Axiom-Line series’ performance exceeding clinical standards, featuring world-class implant design and surface treatment technology.

ISQ values during the research period

ISQ value

Week0 Week1 Week2 Week3 Week4 Week6 Week10
SLA(n=25) 78.40+10.77 80.67+7.39 80.81+7.38 82.33+6.91 83.81+6.10 85.10+5.21 86.60+5.56
RBM(n=25) 83.05+4.32 81.65+5.15 78.45+7.10 79.25+5.59 80.60+5.36 82.20+3.90 84.65+4.43
p-value 0.097 0.090 0.224 0.057 0.035a) 0.014a) 0.0128
total(n=35) 81.39+6.83 80.46+6.85 80.13+7.46 81.47+6.77 81.47+6.77 84.30+5.10 86.00+5.38

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