Traitement chirurgical des lésions infra osseuses parodontales : comparaison entre la technique sans apport et avec apport du RTR
Main Article Content
Abstract
abstract4
Downloads
Article Details

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.
A- Open Access statement and license:
1-Open Access statement:
JFMO provides immediate open access to published content in support of the idea that free access to research helps support the dissemination of knowledge and ideas in the field of medical science. All articles will be published under Creative Commons licenses.
All published data is immediate free access to the work and permits any user to read, download, copy, distribute print, search, or link to the full texts of articles.
The users of any published material in the JFMO must act in accordance with the Creative Commons Licenses CC BY-NC-ND 4.0.
2-License:
All published data is distributed following the Creative Commons Licenses CC BY-NC-ND 4.0. This license is allowing others to download the works and share them with others as long as they correctly cite the manuscript, No changes are allowed to the original manuscript and the manuscript must be used only for non for profit or non-commercial purposes.
This work is licensed under a Creative Commons AttributionNonCommercial-NoDerivatives 4.0 International License.
3-Self Archiving:
Authors are permitted and encouraged to share online their articles published in JFMO (e.g., in institutional repositories or on their website), as it can lead to productive exchanges, as well as earlier and greater citation of published work.
References
Wolf HF, Rateitschak EM, Rateitschak KH. Parodontologie. Elsevier
Masson ; 2005.
Boillot A, Hamdi Z, Carra MC, Range H, Bouchard P. Impact socio-éco-
nomique desmaladies parodontales. Elsevier; 2019.
Kassbaum NJ, Bernabe E, Dahia M, Bhandari B, Murray CJ, Marcenes W.
Global burden of severe periodontitis in 1990-2010: a systematic review
and meta-regression. J Dent Res. 2014;93(11):1045-1053. https://doi.
org/10.1177/0022034514552491.
Sanz M, Herrera D, Kebschull M, Chapple L, Jepsen S, Berglundh T, et
al. Traitement de la parodontite de stade I-III : Les recommandations S3
de l’EFP en pratique clinique. J Clin Periodontol. 2020 ;47 :4-60.
Horch HH, Sader R, Pautke C, Neff A, Deppe H, Kolk A. Synthetic, pure-
phase beta-tricalcium phosphate ceramic granules (Cerasorb) for bone re-
generation in the reconstructive surgery of the jaws. Int J Oral Maxillofac-
Surg. 2006 ;35(8) :708-713. https://doi.org/10.1016/j.ijom.2006.03.017.
El Chaar E. Practical techniques in periodontics and implant dentistry.
Wiley Blackwell; 2023. p. 77.
Becker W, Becker BE, Berg L, Camsam C. Clinical and volumetric ana-
lysis of three-wall intrabony defects following open flap debridement. J
Periodontol. 1986; 57:277-285.
Stein JM, Fickl S, Yekta SS, Hoischen U, Ocklenburg C, Smeets R.
Clinical evaluation of a biphasic calcium composite grafting material in
the treatment of human periodontal intrabony defects: a 12-month ran-
domized controlled clinical trial. J Periodontol. 2009;80(11):1774-1782.
https://doi.org/10.1902/jop.2009.090229.
Pham TA. Treatment of intraosseous defects with PRF, RTG, debride-
ment alone. J Evid Based Dent Pract. 2021.
Chawla K, Lamba AK, Faraz F, Tandon S. Evaluation of beta-tricalcium
phosphate in human infrabony periodontal osseous defects: a clinical stu-
dy. Quintessence Int. 2011;42(4):291.
Gokhale ST, Dwarakanath CD. The use of a natural osteoconductive
porous bone mineral (Bio-Oss™) in infrabony periodontal defects. J Indian
Soc Periodontol. 2012;16(2):247-252.
Pavani MP, Reddy KRKM, Reddy BH, Biraggari SK, Babu CHC, Chavan
V. Evaluation of platelet-rich fibrin and tricalcium phosphate bone graft
in bone fill of intrabony defects using cone-beam computed tomography:
A randomized clinical trial. J Indian Soc Periodontol. 2021;25(2):138-143.
https://doi.org/10.4103/jisp.jisp_621_19.
Liu CC. Tricalcium phosphate-containing biomaterials in the treat-
ment of periodontal infra-bony defects: a systematic review and me-
ta-analysis. Zurich Open Repository and Archive;University of Zurich;
Saini N, Sikri P, Gupta H. Evaluation of the relative efficacy of auto-
logous platelet-rich plasma in combination with ?-tricalcium phosphate
alloplast versus an alloplast alone in the treatment of human periodontal
infrabony defects: A clinical and radiological study. Indian J Dent Res.
;22(1):107-115. https://doi.org/10.4103/0970-9290.80008.
Cochran DL, Oh TJ, Mills MP, Clem DS, McClain PK, Schallhorn
RA, et al. A randomized clinical trial evaluating rh-FGF-2/beta-TCP
in periodontal defects. J Dent Res. 2016;95(5):523-530. https://doi.
org/10.1177/0022034516632497.
Kavyamala D, G NV, Dwarakanath CD, Anudeep M. Evaluation of the
efficacy of a 1:1 mixture of beta-TCP and rhPDGF-BB in the surgical mana-
gement of two- and three-wall intraosseous defects: A prospective clinical
trial. Int J Periodontics Restorative Dent. 2019;39(1):107-113. https://
doi.org/10.11607/prd.3829.
B. Ozdemir, E. Okte, Treatment of Intrabony Defects with Béta-tri-
calcium Phosphate alone and in Combinaison with Platelet Rich Plasma. J.
Biomed Master. Res. B appl. Biomater.100 (4) (2012), 967-983.
Kishore DT, Bandiwadekar T, Padma R, Debunath S, Profulla A, Red-
dy A. Evaluation of Relative Efficacy of ?-Tricalcium Phosphate with and
without type 1 Resorbable Collagen Membrane in Periodontal Infrabony
Defects : A Clinical and Radiographic Study. J ContempDent Pract. 2013
;14(2) :193–201.
Naineni R, Ravi V, Subbaraya DK, Prasanna JS, Panthula VR, Kodu-
ganti RR. Effect of alendronate with beta-TCP bone substitute in surgical
therapy of periodontal intra-osseous defects: A randomized controlled
clinical trial. J Clin Diagn Res. 2016;10 (8). https://doi.org/10.7860/
jcdr/2016/20965.8365.
Lee MJ, Kim BO, Yu SJ. Clinical evaluation of a biphasic calcium phos-
phate grafting material in the treatment of human periodontal intrabo-
ny defects. J Periodontal Implant Sci. 2012;42(4):127-135. https://doi.
org/10.5051/jpis.2012.42.4.127.
Abo-Zaid FA, Fahmy WA, Eid HA, El-Refaei ANMH. Clinical and radio-
graphic evaluation of beta-tricalcium phosphate as bone graft in treat-
ment of infra-bony periodontal defect. Al-Azhar J Dent Sci. 2010;13(2)
J.B. Rajesh, K. Nandakumar, H.K. Varma, M. Komath. Calcium Phos-
phate Cement as a “Barrier-Graft” for the Treatment of Human Perio-
dontal Intra osseous Defects, Indian J. Dent. Res. 20 (4) (2009) 471–479,
https://doi.org/10.4103/0970-9290.59459
Y. Shirakata, T. Setoguchi, M. Machigashira, T. Matsuyama, Y. Fu-
ruichi, K. Hasegawa, T. Yoshimoto, Y. Izumi, Comparison of Injectable
Calcium Phosphate Bone Cement Grafting and Open Flap Debridement in
Periodontal Intrabony Defects : A RandomizedClinical Trial, J. Periodon-
tol. 79 (1) (2008) 25–32, https://doi.org/10.1902/jop.2008.070141.
Stavropoulos, K. Bertl, L.M. Spineli, A. Sculean, P. Cortellini, M.
Tonetti Medium- and long-term Clinical Benefits of Periodontal Regenera-
tive/Reconstructive Procedures in Intrabony Defects : Systematic Review
and Network Meta-Analysis of Randomized Controlled Clinical StudiesJ.
Clin. Periodontol., 48 (3) (2021), pp. 410-430, 10.1111/jcpe.13409.