Straumann Implant Systems Overview
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Straumann - Standard
Tissue level
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Diameter 3.3 - 4.1 - 4.8
Height 6 - 8 - 10 - 12 - 14 - 16
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Straumann - Standard Plus
Tissue level
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Diameter 3.3 - 4.1 - 4.8
Height 6 - 8 - 10 - 14
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Straumann - Tapered Effect
Tissue level
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Diameter 3.3 - 4.1 - 4.8
Height 8 - 10 - 12 - 14
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Straumann - Bone level
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Diameter 3.3 - 4.1 - 4.8
Height 8 - 10 -12 - 14
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Straumann - Bone level Tapered
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Diameter 3.3 - 4.1 - 4.8
Height 8 - 10 -12 - 14 - 16
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For more information Click on the above pictures
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+ Advantages
- SLActive surface
- Titanium-Zirconium (TiZr) alloy - Rexoild
- CrossFit Connection
- Available different prosthesis components
- Disadvantages
- High price
- Lack of stopper
iTi company produced Straumann system that it have variety and specific features, we describe about those in brief.
Straumann System has two type implants: 1. Tissue level and 2. Bone level
1. Tissue level Implants
1-1 Standard
1-2 Standard Plus
1-3 Tapered Effect
Straumann’s tissue-level implants deliver ten years of long-term results and boast more than four million implants sold. The polished collar on tissue level implants is designed to help soft tissue management and complements a diverse range of prosthetic options for the temporary or final restoration.
1-1 Straumann Standard Implant
- Classic Implant
- Tissue level
- 2.8 mm smooth neck section
- Optimized thread design ---> Optimal primary and secondary stability
- Good for one-stage or transgingival healing
1-2 Standard PLUS Impalnt
- Tissue level
- Solution for Treating Limited Space
- 1.8 mm smooth neck section
- Optimized thread design ---> Optimal primary and secondary stability
1-3 Straumann Tapered Effect Implant
- The specialist for immediate and early implantation
- The special anatomical shape ---> The upper conical part fits optimally into the cervical shape of the extraction alveolus and the cylindrical part in the root region is designed to provide high primary stability
- 1.8 mm smooth neck section
- Specific TE thread design ---> Self-tapping geometry with low thread pitch
2. Bone Level Implants
2-1 Bone Level (BL)
2-2 Bone Level Tapered (BLT)
2-1 Bone Level (BL)
- High confidence and treatment
- Excellent crestal bone maintenance and a high survival rate of 99.2%
- Minimal tissue trauma from start to finish ---> Provide excellent results
- Same procedures and instruments for all Straumann dental implants
- Conical connection ---> Provides bacterial seal and minimizes sensitivity to lateral forces
- Easy to use
2-2 Bone Level Tapered (BLT)
- Bone Control Design ---> Maximized crestal bone preservation and microgap control
- High Primary stability in all bone classes
- Apically tapered – Overcomes anatomical restrictions and is designed to enable placement in under-prepared sites
- Three cutting notches in tapered apex ---> Suitable for situations involving soft bone or fresh extraction sockets
- Ideal for immediate placement and loading such as soft bone or fresh extraction sockets
- Flexibility to make the most of patient’s limited anatomy such as facial undercuts, converging root tips, concave jaw structure or narrow atrophied ridges
Loxim is a pre-mounted, self-retained transfer piece that offers clockwise and counter-clockwise rotations for one step implant insertion. With Loxim, the holding key is no longer required to remove the transfer piece, helping to make implant placement more efficient.
Author: Review department of Dandal.ir
First Release Date: 14/Feb/2015
Last Modified: 15/May/2016
Sources:
- 10-year Survival and Success Rates of 511 Titanium Implants with a sandblasted and Acid Etched Surface: A Retrospective Study in 303 Partially Edentulous Patients. Clin Implant Dent Relat Res. 2012 Dec;14(6):839-51
- A prospective non-interventional study to evaluate survival and success of reduced diameter implants made from titanium-zirconium alloy. J Oral Implantol. 2014 Mar 25
- A prospective noninterventional study to document implant success and survival of the Straumann Bone Level SLActive dental implant in daily dental practice. Quintessence Int. 2013;44(7):499-512
- A pilot study to evaluate the success and survival rate of titanium-zirconium implants in partially edentulous patients: results after 24 months of follow-up. Clin Oral Implants Res. 2012 Jul;23(7):873-81
- Bone regeneration in dehiscence-type defects at chemically modified (SLActive) and conventional SLA titanium implants: a pilot study in dogs. J Clin Periodontol. 2007 Jan;34(1):78-86
- Complication and Failure Rates with Implant-Supported Fixed Dental Prostheses and Single Crowns: A 10-Year Retrospective Study. Clin Implant DentRelat Res. 2013; Apr 2
- Convergent methods assessing bone growth in an experimental model at dental implants in the minipig.Ann Anat. 2014 Mar 5. pii: S0940-9602(14)00016-8
- Evaluation of a new titanium-zirconium dental implant: a biomechanical and histological comparative study in the mini pig. Journal of Clinical Implant Dentistry and Related Research 2012; 14: 538–545
- Early wound healing around endosseous implants: a review of the literature. Int J Oral Maxillofac Implants. 2005 May–Jun;20(3):425–31
- Early osseointegration to hydrophilic and hydrophobic implant surfaces in humans. Clin Oral Implants Res. 2011 Apr;22(4):349-56
- Immediate and early loading of Straumann implants with a chemically modified surface (SLActive) in the posterior mandible and maxilla: 1-year results from a prospective multicenter study. Clin Oral Implants Res. 2008 Nov;19(11):1119-28
- Le Fort I osteotomy with interpositional graft and immediate loading of delayed modified SLActive surface dental implants for rehabilitation of extremely atrophied maxilla: a case report. J Oral Maxillofac Surg. 2009 Jul;67(7):1486-94
- Long-term results of a three arms prospective cohort study on implants in periodontally compromised patients: 10-year data around sandblasted and acidetched (SLA) surface. Clin Oral Implants Res. 2013; Jul 19
- Osseointegration of SLActive implants in diabetic pigs. Clin Oral Implants Res. 2013 Feb;24(2):128-34
- Prospective 10-year Cohort Study Based on a Randomized Controlled Trial (RCT) on Implant-Supported Full-Arch Maxillary Prostheses. Part 1: Sandblasted and Acid-Etched Implants and Mucosal Tissue.’ Clin Implant Dent Relat Research. 2012 Dec;14(6):808-15
- Prospective 10-year cohort study based on a randomized, controlled clinical trial (RCT) on implant-supported full-arch maxilary prostheses. Part II: Prosthetic outcomes and maintenance. Clin Implant Dent Relat Research.2013 Aug;15(4):498-508
- Resonance frequency analysis of 208 Straumann dental implants during the healing period. J Oral Implantol. 2013 Apr;39(2):161-7
- Success and survival rates of narrow diameter implants made of titanium-zirconium alloy in the posterior region of the jaws - results from a 1-year follow-up.Clin Oral Implants Res. 2013 Feb 17
- Small-diameter titanium Grade IV and titanium-zirconium implants in edentulous mandibles: three-year results from a double-blind, randomized controlled trial.Clin Oral Implants Res. 2014 Apr 9. doi: 10.1111/clr.12367
- Surface characterization of SLActive dental implants. Eur J Esthet Dent. 2012 Spring;7(1):72-92
- Transcriptional profiling of osseointegration in humans. Clin Oral Implants Res. 2011 Apr;22(4):373-81
- Titanium-zirconium narrow-diameter versus titanium regular diameter implants for anterior and premolar single crowns: 1-year results of a randomized controlled clinical study. Journal of Clinical Periodontology 2013 Nov;40(11):1052–61
- The osseointegration behavior of titanium-zirconium implants in ovariectomized rabbits. Clin Oral Implants Res. 2014 Jul;25(7):819-25
- Titanium-zirconium alloy narrow-diameter implants (Straumann Roxolid) for the rehabilitation of horizontally deficient edentulous ridges: rospective study on 18 consecutive patients.Clin Oral Implants Res. 2012 Oct;23(10):1136-41
- Tissue integration of a new titanium-zirconium dental implant: a comparative histologic and radiographic study in the canine.J Periodontol. 2011 Oct;82(10):1453-61
- The roles of PI3K/Akt signaling pathway in regulating MC3T3-E1 preosteoblast proliferation and differentiation on SLA and SLActive titanium surfaces. J Biomed Mater Res A. 2013 Mar;101(3):748-54
- The influence of surface microroughness and hydrophilicity of titanium on the up-regulation of TGFβ/BMP signalling in osteoblasts. Biomaterials. 2011 Jan;32(3):665-71
- The effect of SLActive surface in guided bone formation in osteoporotic-like conditions. Clin Oral Implants Res. 2011 Apr;22(4):406-15
- The effect of SLActive surface in guided bone formation in osteoporotic-like conditions. Clin Oral Implants Res. 2011 Apr;22(4):406-15
- Wetting behavior of dental implants. Int J Oral Maxillofac Implants. 2011 Nov-Dec;26(6):1256-66