What titanium is, and why implants are made of it
Titanium is a light, strong metal. It is the standard material for dental implants, the screws placed in the jawbone to replace the roots of missing teeth. Titanium implants are made of commercially pure titanium or a titanium alloy1. After surgery, the bone heals in close contact with the implant surface. The implant can then carry a crown, a bridge or a denture.
A German clinical guideline on ceramic implants regards titanium as the international standard2 for implants, with a much longer record than ceramic implants. That does not make all titanium implants the same. They differ in grade or alloy, surface, shape and the way the parts join. An international consensus report notes that there is no generic implant3.
This page explains the material itself. Who an implant suits, how the treatment is carried out and its risks are explained on our dental implant treatment page. On this page, "we" means our clinic in Antalya. This page does not say which implant system our clinic uses. Your dentist will tell you which system is planned for you, and you can ask for this in writing (see "Questions, records and consent" below). Every study figure here comes from published studies, not from our own records.
- Titanium is the standard material for dental implants: commercially pure titanium, graded by number, or a titanium alloy.
- Implant systems differ in grade or alloy, surface, shape and connection; there is no generic implant, so ask which system is planned for you.
- Good long-term results have been reported for the surface types studied, mostly without direct comparisons. Roughness alone seems to make little difference to bone loss.
- Titanium particles are found around implants and are linked with complications, but cause and effect has not been shown. Titanium intolerance is not well documented, and skin and blood tests do not help to assess it.
- Titanium implants need daily cleaning and regular reviews. Zirconia (ceramic) implants are an alternative in selected cases.
Common dental uses of titanium
Titanium is used in several parts of implant treatment. The parts are made to fit each other as one system.
- The implant. The screw placed in the jawbone. Once it has fused with the bone, it carries everything above it.
- The abutment. The connecting part between the implant and the crown. Abutments can be made of titanium or of other materials such as zirconia. In one trial, ceramic crowns were cemented onto individually made titanium abutments4.
- The titanium base. A short titanium part onto which a ceramic crown is bonded outside the mouth. The crown is then screwed onto the implant. In the same trial, the screw-retained crowns were bonded to titanium bases in this way.
- Screws. A small screw holds the abutment, or a screw-retained crown, on the implant. It belongs to the implant system.
- Frameworks for full-arch bridges. A fixed bridge on several implants, such as All-on-4, has a framework inside it. Frameworks can be made of different materials; this page does not compare them. Ask what yours is made of.
- Bone grafting. Small screws are sometimes used to hold a block of bone graft in place while it heals. A Cochrane review of bone augmentation trials noted that titanium screws may be preferable to resorbable screws5 for this. Details are on our bone grafting and sinus lift page.
This page covers implants and their parts. Metals used in crowns and bridges on natural teeth are covered on our metal-ceramic restorations and dental alloys page.
Grades and alloys
Titanium implants are made either of commercially pure titanium or of a titanium alloy. The figures in this section are handbook values for the materials, not measurements of any implant.
- Commercially pure titanium comes in four grades, numbered 1 to 4. They differ chiefly in how much oxygen the metal contains1. Strength rises with the grade. A 2015 review compiled handbook values for tensile strength (resistance to being pulled apart). They are about 240 megapascals (MPa) for grade 1 and 550 MPa for grade 4.
- Titanium alloy. The main alloy described for implants in the same review is titanium with aluminium and vanadium, written Ti-6Al-4V. Its handbook tensile strength is about 930 MPa. You may see an alloy described by a grade number or by its composition; ask which one your implant is made of.
- Titanium-zirconium alloy. Some narrow implants are made of an alloy of about 83 to 87 per cent titanium and 13 to 17 per cent zirconium. Its strength figures come partly from the manufacturer1. It is still a metal. It is not zirconia, the white ceramic described under "Alternative materials" below.
What the grade does and does not tell you
A 2015 paper on implant systems was prepared for a consensus workshop. It found that the implants with the most clinical documentation at that time were screw-shaped and made of commercially pure grade 4 titanium6. Clinical comparisons between grades or alloys are few and short; the one we cite, for narrow titanium-zirconium implants, is described below. A higher grade number or a stronger alloy does not by itself mean a longer-lasting implant.
Strength matters most for narrow implants. An older study cited in the 2015 review found implant fractures most often in 3.75 mm implants made of grade 1 titanium1, the lowest-strength grade. The review names metal fatigue as the proposed cause.
For narrow titanium-zirconium implants, a review pooled studies of 256 implants carrying single crowns, followed for up to 36 months. It reported 97.5 per cent survival and 97.2 per cent success7. Survival means the implant was still in the mouth; success means it also met the studies' criteria. Bone loss showed no statistically significant difference from commercially pure titanium implants. The authors say the studies and follow-up are not enough to determine the real benefit.
Surface and manufacturing
Surfaces
Implant surfaces are treated to change their texture. Surface types studied over ten years or more include machined (turned) surfaces and rougher ones, such as titanium plasma-sprayed and anodised surfaces.
- A review covered 62 clinical studies with at least ten years of follow-up. Implant survival ranged from 82.9 to 100 per cent8 across the studies. Average bone loss was under 2 mm for every surface type. Most studies did not compare surfaces directly. The authors concluded that very good long-term results are possible with all the surface types included.
- A review of 87 papers found that the effect of surface roughness alone on bone loss seems rather limited and of minimal clinical importance9. A history of gum disease and smoking were associated with more bone loss.
- A 2014 Cochrane review of randomised trials found no evidence that any particular type of implant had superior long-term success10. Cochrane withdrew the review in 2019 as out of date, while stating that it was correct when it was published. In the review, three years after loading, machined implants had a 20 per cent lower risk of peri-implantitis than implants with much rougher surfaces. They tended to fail early more often, though. The evidence was limited.
How the parts join
The abutment joins the implant either inside it (an internal connection) or on top of it (an external connection). A review of 11 studies found 0.44 mm less bone loss on average11 with internal connections. It found no statistically significant difference in implant survival or complications, and the certainty of the evidence was very low to moderate. A randomised trial in 120 patients found no significant differences after five years12.
Documentation and original parts
The same 2015 workshop paper advises dentists to make sure an implant system is appropriate and supported by scientific evidence6. It also advises caution with non-genuine parts, which may fit poorly and lead to technical and biological complications. A review of 40 studies, most of them laboratory studies, compared abutments made by the implant's own manufacturer with non-original ones. Original abutments generally fitted better, though some non-original ones were comparable, and the authors recommend using original abutments13.
The CE mark
Under the EU Medical Device Regulation, the CE mark is a marking by which a manufacturer indicates14 that a device conforms with the Regulation's requirements. EU classification guidance places dental implants without bioactive coatings, and abutments, in class IIb15. A notified body, an organisation designated to check that devices meet the requirements, takes part in assessing implantable devices. Turkey's Medical Device Regulation (Tıbbi Cihaz Yönetmeliği) was also prepared taking this EU regulation into account, as part of harmonisation with EU legislation16. A CE mark is a statement of conformity: it does not rank implants or tell you how long one lasts. Long-term clinical studies do that.
Fusion with bone (osseointegration)
Osseointegration means that the bone heals in close, firm contact with the implant surface. Once it has happened, the implant can carry a crown, a bridge or a denture. It is a biological process, and it does not happen in the same way for everyone.
- It takes time. How long depends on the bone, the implant's position, any graft and how you heal. As a guide, the Cochrane review of loading times calls a crown fitted more than two months after placement17 conventional loading. Fitting it earlier is done only in selected cases. Your dentist sets your own healing period after examining you.
- It can fail early. In a national Swedish sample of patients treated in 2003, early implant loss affected 4.4 per cent of patients18 (1.4 per cent of implants). Smoking, gum disease, implants shorter than 10 mm and certain brands were associated with higher odds of early loss.
- It can be lost later. One Swiss university cohort of titanium implants was followed for 25 years. Of the 252 implants followed up to 25 years, 94 per cent were still in place. Among the implants that were lost, loss of osseointegration accounted for about 60 per cent of the failures19, all at premolar or molar sites. Peri-implantitis rose from 3.5 per cent of implants at 10 years to 9.1 per cent at 25. About half the implants could not be re-examined after year 10, and the results come from one centre and one implant type.
Fusion with bone is a starting point, not a promise for life. Keeping it depends on the health of the gum and bone around the implant, and on care and reviews (see "Maintenance around titanium implants" below).
Benefits and limitations
The figures below come from published studies, not from our own records.
Benefits
- A long clinical record. A review pooled 18 prospective studies of contemporary implant systems (solid screws with roughened surfaces). It estimated that 96.4 per cent of implants were still in place after ten years20. When the authors allowed for patients who stopped attending, the estimate fell to 93.2 per cent. The range they expect in other settings then reached down to 76.6 per cent. In that analysis, people aged 65 or over had a ten-year survival of 91.5 per cent.
- A system of matching parts. The implant, abutment and screws are made to fit each other. When a crown on top is damaged, it can be repaired or replaced.
- No neighbouring teeth ground down. Like any implant, it fills a gap without reducing the teeth either side.
Limitations
- Inflammation around the implant. Peri-implantitis is inflammation with loss of the supporting bone. A 57-study review reported it in about 20 in 100 patients and about 12 in 100 implants21. The rates vary widely with the definition used.
- The metal can show. At the front of the mouth, the gum can recede over time, and the metal edge of the implant can then show.
- Problems with the parts. Screws can loosen and crowns can come loose or chip (see "Corrosion and wear" below).
- Not interchangeable. Abutments and screws are made for a particular system, and non-original parts call for caution (see "Surface and manufacturing" above).
- No lifetime result can be promised. Being in place does not mean having no problems. Any promise of such a result is not based on evidence.
Corrosion and wear
Titanium surfaces can wear and corrode in the mouth. A critical review was written for the 2018 consensus conference of the European Association for Osseointegration. It found that titanium particles and breakdown products of titanium have been detected22 in tissues in and outside the mouth. Particles are released from the implant surface by tribocorrosion. That is mechanical wear combined with chemical factors, including contact with substances produced by the bacterial film (plaque) on the implant and by inflammatory cells.
What this means for patients is not settled:
- In laboratory studies, titanium particles can interfere with cell function and promote inflammation.
- Particles are commonly found in healthy and diseased gum around implants alike, and at low levels even in the gums of people without titanium implants.
- Higher titanium levels in peri-implantitis could be the consequence of the bacterial film and inflammation22, rather than the trigger.
- The review found an association between corrosion, titanium particles and complications around implants, but not enough evidence to prove cause and effect.
Because substances from the bacterial film are among the factors involved, keeping plaque off the implant matters here as well as for the gum.
Wear and loosening of the parts
The parts that join the crown to the implant are under load every time you bite. A review of 46 studies looked at single crowns on implants. Its estimated cumulative five-year rates were: screw loosening 8.8 per cent, the crown coming loose 4.1 per cent and chipped porcelain 3.5 per cent23. The review's published summary does not say whether these rates are counted per implant or per crown, or what caused the problems. The crown is a separate part from the implant. In the same review, of every 100 crowns, about 96 were in use after five years and about 89 after ten23. These figures are estimates from a statistical model, based on studies with a mean follow-up of at least five years. A loose screw can be tightened and a damaged crown repaired or replaced. Regular reviews are needed to find these problems.
Sensitivity and adverse reactions
Some people worry about a metal allergy before getting an implant. The German guideline on titanium hypersensitivity says titanium intolerance is not adequately documented24, and that other metals must be considered as well. The 2018 critical review found tissue reactions suggesting hypersensitivity in a limited number of cases22. Other factors linked to placing the implant could also have caused them.
- Testing. The guideline says skin patch tests and blood (lymphocyte) tests do not help to assess titanium intolerance. It advises against patch testing people before treatment just in case.
- If intolerance is suspected. Strong evidence links25 inflammation around implants with poor plaque control and a history of gum disease (see "Maintenance around titanium implants" below). Your dentist checks for these as well. The guideline says a ceramic (zirconia) implant may be considered. That recommendation rests on low-level evidence.
- Implants that are working well. The guideline says removing an implant for suspected intolerance should be decided on very strict grounds. We have found no evidence supporting the replacement of healthy titanium implants with ceramic ones.
- Other metals. Titanium alloys contain other metals, and the crown or bridge on an implant may contain other alloys. Tell your dentist about any reaction to metals you have had, and ask what each part is made of.
Maintenance around titanium implants
An implant cannot decay, but the gum and bone around it can become inflamed. Peri-implant mucositis is inflammation of the soft tissue around an implant. It is reversible but can evolve into peri-implantitis26 if it is not properly addressed. A review for the 2017 World Workshop found strong evidence25 linking peri-implantitis with a history of chronic periodontitis, poor plaque control and no regular maintenance. It found some limited evidence for other factors, among them cement left under the gum after a crown has been cemented25.
Daily care
- Brush twice a day with a soft brush and fluoride toothpaste. Pay particular attention to the line where the implant meets the gum.
- Clean between the teeth every day with interdental brushes, floss or a water flosser. Your dentist shows you which works in your mouth.
- Smoking has been associated with more bone loss9 around implants. If you smoke, tell your dentist.
Reviews
- When the crown or bridge is complete, a consensus report recommends that an X-ray and probing measurements be taken as a baseline3. Probing measures the depth of the gap between the gum and the implant. Later changes are compared with this record.
- The European Federation of Periodontology guideline calls for a structured supportive care programme27 once implants are in use. It includes periodic checks of the tissues around them.
- A clinical guideline on the interval between dental check-ups is not specific to implants; it covers check-ups in general. It recommends that the interval be set for each patient28, based on a risk assessment. So there is no single interval that suits everyone.
- Tell any dentist who treats you that you have implants, and give them your implant record and baseline X-ray.
When to see a dentist
See a dentist without waiting for your next review if the gum around an implant bleeds, swells, recedes or releases pus. The same applies if the implant or the tooth on it feels loose, a screw feels loose, or a piece cracks or breaks.
Alternative materials
Zirconia (ceramic) implants
Ceramic implants are made of zirconia (zirconium dioxide), a white ceramic. A 2026 review pooled 9 studies that compared the two materials directly, with 435 implants. It found no significant difference in implant survival29 at one year, three years and five years or more. The authors limit their conclusion to healthy patients, follow-up of up to five years and older implant systems, part of which are no longer sold. Beyond five years there is too little comparative data, and "no significant difference" does not mean "just as good".
- Where they are used. An international consensus report states that ceramic implants can be an alternative to titanium in selected cases30. A position paper for the European Association for Osseointegration looked at one-piece zirconia implants. It found evidence of an outcome comparable to titanium implants when they replace one to three missing teeth31 with fixed crowns or a small bridge.
- One-piece or two-piece. In a one-piece ceramic implant, the part in the bone and the part that carries the crown are a single piece. There is little room to correct its angle or position afterwards, which calls for precise planning and an experienced team31. Most of the research is on one-piece implants; the evidence for two-piece implants is limited30. In the 2026 review above, a subgroup analysis found lower survival at one year with two-piece zirconia implants than with titanium implants29. The authors describe this as a potential difference. A German guideline says a two-piece ceramic implant should be used only after the patient has been told in detail2 that long-term data are missing.
- Removable full dentures held by implants. Results were weaker. In one review, about 70 in 100 ceramic implants holding removable full dentures were in place after an average of 12 months32. The authors called this less predictable. A ceramic implant can itself break. A 2023 review reported a trial of implants holding full dentures. In that trial, three zirconia implants broke within the first year, and no titanium implant did33.
- Gum health. A review of comparative studies found no statistically significant difference in biological complications34 between the two materials, with moderate certainty. A ceramic implant does not prevent peri-implantitis and needs the same cleaning and reviews.
The use of zirconia for crowns is explained on our zirconia crowns page.
Ceramic parts on titanium implants
The implant can be titanium while the abutment is ceramic. An international consensus report suggests, as expert opinion, that ceramic parts passing through the gum might be preferred where appearance matters most30. This page cites no study showing a better appearance.
Not having an implant
A bridge, a partial or complete denture, or leaving the gap are alternatives to an implant of any material. They are compared on our dental implant treatment page. Before you decide, you can also ask another dentist for an opinion. Other materials used in implant treatment, such as bone grafting materials, are described on our other dental materials page.
Questions, records and consent
Before treatment, ask in writing:
- which implant system is planned: the manufacturer, the system and product name, the diameter and the length;
- what the implant is made of: commercially pure titanium and its grade, a titanium alloy, or titanium-zirconium;
- whether the abutment and screws are original parts of the same system, and what the crown and any framework are made of;
- who will place the implant, and who will make the crown or bridge, and where;
- what your written plan says if the implant fails or a part loosens or breaks, and who pays for repairs.
Your dentist will tell you which material and which laboratory will be used, and you can ask for this in writing.
What you are told. Turkey's patient rights regulation sets out what you must be told before treatment. This includes who will carry out the treatment, where and how, the other options with their benefits and risks, and the possible complications35. You also have the right to be told, on request, who is treating you, and their role and title35.
Consent. In private dental clinics, you are asked to sign a consent form for every intervention36. Two copies of the form are signed, and one is given to you35. Ask for your copy.
Records to keep:
- an implant card or a written record for each implant: manufacturer, system, model, diameter, length, and reference and lot (batch) numbers;
- the date each implant was placed and its site in the mouth;
- the abutment and screw details, and the crown material;
- copies of your X-rays and scans, including the baseline X-ray and probing measurements;
- your review interval, in writing.
Under Turkish rules, private dental clinics record the diagnosis, the treatment and any X-rays in detail, with tooth numbers36. You can examine your file and records and get a copy35. A dentist who looks after your implant later will need this information.
Your choice. You can say no, or ask to stop, at any stage. Turkey's patient rights regulation gives you the right to refuse treatment or ask for it to be stopped35; the possible consequences are explained to you.
Frequently Asked Questions
Are dental implants made of pure titanium?
Not always. Titanium implants are commercially pure titanium, in one of several grades, or a titanium alloy. Alloys include titanium with aluminium and vanadium, and titanium with zirconium. Some implants are zirconia, a ceramic. Ask in writing which material and which system is planned for you.
Is a higher titanium grade better?
Not necessarily. Among the four grades of commercially pure titanium, strength rises with the grade, but clinical comparisons of grades and alloys are few and short. The design, surface and documentation of the system, and your own health and care, matter too.
Can I be allergic to a titanium implant?
A German guideline says titanium intolerance is not adequately documented, and that skin patch and blood tests do not help to assess it. If intolerance is suspected, a ceramic implant may be considered. Tell your dentist about any past reaction to metals.
Do titanium implants corrode?
Titanium particles and corrosion products have been found in the tissues around implants. Researchers have linked them with complications but have not shown that they cause them. Daily cleaning and regular reviews matter for any implant.
Is zirconia better than titanium for implants?
Studies have not shown that. In healthy patients followed for up to five years, comparative studies found no significant difference in how many implants stayed in place. Longer-term comparisons are lacking, and titanium remains the standard.
Should I replace my titanium implants with ceramic ones?
Not if they are healthy. We have found no evidence supporting the replacement of working titanium implants. A German guideline says removing an implant for suspected intolerance should be decided on very strict grounds.
What should I keep about my implant?
Keep a written record of each implant: the manufacturer, system, model, diameter, length, reference and lot numbers, and the date and site of placement. Keep your X-rays and baseline measurements too. Any dentist who looks after your implant later will need them.

Dt. Dilek AKSU GÜLER
Dentist · Founder
She has completed advanced training in implantology and works in aesthetic restorations and smile design.
Sources
- A critical review of dental implant materials with an emphasis on titanium versus zirconia. Materials (Basel) 2015;8(3):932-958 (Osman RB, Swain MV). 2015.↩doi.org
- German S3 guideline on the use of dental ceramic implants. International Journal of Implant Dentistry 2022;8(1):43. 2022.↩doi.org
- Peri-implant diseases and conditions: consensus report of workgroup 4 of the 2017 World Workshop on the Classification of Periodontal and Peri-Implant Diseases and Conditions. Journal of Clinical Periodontology 2018;45 Suppl 20:S286-S291. 2018.↩doi.org
- Cemented versus screw-retained posterior implant-supported single crowns: a 24-month randomized controlled clinical trial. Clinical Oral Implants Research 2021;32(12):1484-1495. 2021.↩doi.org
- Interventions for replacing missing teeth: horizontal and vertical bone augmentation techniques for dental implant treatment (Cochrane review, 13 RCTs). Cochrane Database of Systematic Reviews 2009;(4):CD003607. 2009.↩doi.org
- Group D. Initiator paper. Implants - peri-implant (hard and soft tissue) interactions in health and disease: the impact of explosion of implant manufacturers. J Int Acad Periodontol 2015;17(1 Suppl):57-68 (Ivanovski S). 2015.↩pubmed.ncbi.nlm.nih.gov
- Clinical outcomes of titanium-zirconium alloy narrow-diameter implants for single-crown restorations: a systematic review and meta-analysis. Br J Oral Maxillofac Surg 2023;61(6):403-410 (Cao R, Chen B, Xu H, Fan Z). 2023.↩doi.org
- Long-term clinical outcome of implants with different surface modifications. Eur J Oral Implantol 2018;11 Suppl 1:S123-S136 (Wennerberg A, Albrektsson T, Chrcanovic B).↩pubmed.ncbi.nlm.nih.gov
- Long-term effect of surface roughness and patients' factors on crestal bone loss at dental implants. A systematic review and meta-analysis. Clin Implant Dent Relat Res 2017;19(2):372-399 (Doornewaard R et al.). 2016.↩doi.org
- Interventions for replacing missing teeth: different types of dental implants (Cochrane review, withdrawn 2019). Cochrane Database Syst Rev 2014;(7):CD003815 (pub4) (Esposito M, Ardebili Y, Worthington HV); withdrawn Issue 10, 2019 (pub5). 2014.↩doi.org
- Comparison of external and internal implant-abutment connections for implant supported prostheses. A systematic review and meta-analysis. J Dent 2018;70:14-22 (Lemos CAA et al.). 2017.↩doi.org
- Dental implants with internal versus external connections: 5-year post-loading results from a pragmatic multicenter randomised controlled trial. Eur J Oral Implantol 2016;9 Suppl 1(2):129-41 (Esposito M et al.).↩pubmed.ncbi.nlm.nih.gov
- Accuracy of original vs. non-original abutments using various connection geometries for single unit restorations: a systematic review. J Prosthodont 2022;31(7):e21-e52 (Rizvi N et al.). 2022.↩doi.org
- Regulation (EU) 2017/745 on medical devices (MDR), original OJ text. European Parliament and Council, OJ L 117, 5.5.2017, p. 1. 2017.↩eur-lex.europa.eu
- MDCG 2021-24 Rev.1: Guidance on classification of medical devices. Medical Device Coordination Group (European Commission), April 2026; states it is not legally binding. 2026.↩health.ec.europa.eu
- Tıbbi Cihaz Yönetmeliği (Medical Device Regulation, Turkey; consolidated text). Türkiye İlaç ve Tıbbi Cihaz Kurumu (TİTCK); Resmî Gazete 2/6/2021 No 31499 (mükerrer), amended RG 29/7/2022-31907, 2/4/2023-32151, 17/8/2024-32635. 2021.↩mevzuat.gov.tr
- Interventions for replacing missing teeth: different times for loading dental implants (Cochrane review, 26 RCTs, 1,217 participants, 2,120 implants). Cochrane Database of Systematic Reviews 2013;(3):CD003878. 2013.↩doi.org
- Effectiveness of implant therapy analyzed in a Swedish population: early and late implant loss. J Dent Res 2015;94(3 Suppl):44S-51S (Derks J et al.). 2014.↩doi.org
- Long-term incidence of peri-implant conditions: 25-year results of the Bernese prospective cohort study. Clin Implant Dent Relat Res 2026;28(4):e70171 (Couso-Queiruga E et al.). 2026.↩doi.org
- Long-term (10-year) dental implant survival: a systematic review and sensitivity meta-analysis. J Dent 2019;84:9-21 (Howe MS, Keys W, Richards D). 2019.↩doi.org
- What is the prevalence of peri-implantitis? A systematic review and meta-analysis (57 articles, 2005-2021). BMC Oral Health 2022;22(1):449. 2022.↩doi.org
- What is the impact of titanium particles and biocorrosion on implant survival and complications? A critical review. Clinical Oral Implants Research 2018;29 Suppl 18:37-53 (Mombelli A, Hashim D, Cionca N; 5th EAO Consensus Conference 2018). 2018.↩doi.org
- Systematic review of the survival rate and the incidence of biological, technical and aesthetic complications of single crowns on implants (46 studies, mean follow-up 5 years). Clinical Oral Implants Research 2012;23 Suppl 6:2-21. 2012.↩doi.org
- The German S3 guideline on titanium hypersensitivity in implant dentistry: consensus statements and recommendations. International Journal of Implant Dentistry 2022;8(1):51. 2022.↩doi.org
- Peri-implantitis (narrative review for the 2017 World Workshop on the Classification of Periodontal and Peri-Implant Diseases and Conditions). Journal of Clinical Periodontology 2018;45 Suppl 20:S246-S266. 2018.↩doi.org
- AO/AAP consensus on prevention and management of peri-implant diseases and conditions: summary report. Journal of Periodontology 2025;96(6):519-541. 2025.↩doi.org
- Prevention and treatment of peri-implant diseases: the EFP S3 level clinical practice guideline. Journal of Clinical Periodontology 2023;50 Suppl 26:4-76. 2023.↩doi.org
- Dental checks: intervals between oral health reviews (clinical guideline CG19). National Institute for Health and Care Excellence, published 27 October 2004. 2004.↩nice.org.uk
- Survival and Clinical Performance of Zirconia Compared to Titanium Implants: A Systematic Review and Meta-Analysis (ZrO Summit 2025, Group 1). Int J Oral Maxillofac Implants, online ahead of print 15 May 2026. 2026.↩doi.org
- Group 3 ITI Consensus Report: Materials and antiresorptive drug-associated outcomes in implant dentistry. Clinical Oral Implants Research 2023;34 Suppl 26:169-176. 2023.↩doi.org
- EAO Position Paper: Current Level of Evidence Regarding Zirconia Implants in Clinical Trials. International Journal of Prosthodontics 2022;35(4):560-566. 2022.↩doi.org
- Clinical outcomes of zirconia implants supporting multi-unit and complete arch prostheses: A systematic review and meta-analysis. Journal of Prosthetic Dentistry 2025;134(5):1631.e1-1631.e8. 2025.↩doi.org
- Survival and success of zirconia compared with titanium implants: a systematic review and meta-analysis. Clinical Oral Investigations 2023;27(11):6279-6290. 2023.↩doi.org
- Biological Complications and Peri-implant Tissue Response of Zirconia Compared with Titanium Dental Implants: A Systematic Review and Meta-analysis of Clinical Evidence (ZrO Summit 2025, Group 4). Int J Oral Maxillofac Implants, online ahead of print 17 Apr 2026. 2026.↩doi.org
- Hasta Hakları Yönetmeliği (consolidated text). T.C. Sağlık Bakanlığı; Resmî Gazete 1/8/1998 No 23420, amended RG 8/5/2014-28994, 23/12/2016-29927, 16/1/2019-30657. 1998.↩mevzuat.gov.tr
- Ağız ve Diş Sağlığı Hizmeti Sunulan Özel Sağlık Kuruluşları Hakkında Yönetmelik (consolidated text). T.C. Sağlık Bakanlığı; Resmî Gazete 6/10/2022 No 31975, amended RG 5/3/2024-32480 and 15/12/2024-32753. 2022.↩mevzuat.gov.tr