Literature DB >> 24966231

Effect of alveolar ridge preservation after tooth extraction: a systematic review and meta-analysis.

G Avila-Ortiz1, S Elangovan2, K W O Kramer3, D Blanchette4, D V Dawson4.   

Abstract

Alveolar ridge preservation strategies are indicated to minimize the loss of ridge volume that typically follows tooth extraction. The aim of this systematic review was to determine the effect that socket filling with a bone grafting material has on the prevention of postextraction alveolar ridge volume loss as compared with tooth extraction alone in nonmolar teeth. Five electronic databases were searched to identify randomized clinical trials that fulfilled the eligibility criteria. Literature screening and article selection were conducted by 3 independent reviewers, while data extraction was performed by 2 independent reviewers. Outcome measures were mean horizontal ridge changes (buccolingual) and vertical ridge changes (midbuccal, midlingual, mesial, and distal). The influence of several variables of interest (i.e., flap elevation, membrane usage, and type of bone substitute employed) on the outcomes of ridge preservation therapy was explored via subgroup analyses. We found that alveolar ridge preservation is effective in limiting physiologic ridge reduction as compared with tooth extraction alone. The clinical magnitude of the effect was 1.89 mm (95% confidence interval [CI]: 1.41, 2.36; p < .001) in terms of buccolingual width, 2.07 mm (95% CI: 1.03, 3.12; p < .001) for midbuccal height, 1.18 mm (95% CI: 0.17, 2.19; p = .022) for midlingual height, 0.48 mm (95% CI: 0.18, 0.79; p = .002) for mesial height, and 0.24 mm (95% CI: -0.05, 0.53; p = .102) for distal height changes. Subgroup analyses revealed that flap elevation, the usage of a membrane, and the application of a xenograft or an allograft are associated with superior outcomes, particularly on midbuccal and midlingual height preservation. © International & American Associations for Dental Research.

Entities:  

Keywords:  alveolar bone atrophy; alveolar bone grafting; alveolar bone loss; bone remodeling; evidence-based dentistry; tooth loss

Mesh:

Substances:

Year:  2014        PMID: 24966231      PMCID: PMC4293706          DOI: 10.1177/0022034514541127

Source DB:  PubMed          Journal:  J Dent Res        ISSN: 0022-0345            Impact factor:   6.116


  56 in total

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8.  Tissue changes of extraction sockets in humans: a comparison of spontaneous healing vs. ridge preservation with secondary soft tissue healing.

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9.  Ridge preservation with freeze-dried bone allograft and a collagen membrane compared to extraction alone for implant site development: a clinical and histologic study in humans.

Authors:  John M Iasella; Henry Greenwell; Richard L Miller; Margaret Hill; Connie Drisko; Aziz A Bohra; James P Scheetz
Journal:  J Periodontol       Date:  2003-07       Impact factor: 6.993

10.  Ridge preservation following tooth extraction using a polylactide and polyglycolide sponge as space filler: a clinical and histological study in humans.

Authors:  Giovanni Serino; Salvatore Biancu; Giovanna Iezzi; Adriano Piattelli
Journal:  Clin Oral Implants Res       Date:  2003-10       Impact factor: 5.977

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  72 in total

1.  Simplified type 3 implant placement, after alveolar ridge preservation: a case study.

Authors:  F Cecchetti; F Germano; F N Bartuli; L Arcuri; M Spuntarelli
Journal:  Oral Implantol (Rome)       Date:  2015-04-13

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Authors:  Si-Jie Xiang; Jian Pan
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3.  Can placement of an immediate bone level tapered implant and subperiosteal xenograft help maintain bone architecture in esthetic areas?

Authors:  Alfonso Caiazzo; Federico Brugnami; Pushkar Mehra
Journal:  J Oral Biol Craniofac Res       Date:  2019-04-24

Review 4.  Clinical and esthetic outcomes of immediate implant placement compared to alveolar ridge preservation: a systematic review and meta-analysis.

Authors:  Santiago Mareque; Pablo Castelo-Baz; Joaquín López-Malla; Juan Blanco; José Nart; Cristina Vallés
Journal:  Clin Oral Investig       Date:  2021-06-07       Impact factor: 3.573

Review 5.  Basic Principles of Bioengineering and Regeneration.

Authors:  Tara L Aghaloo; Danny Hadaya
Journal:  Oral Maxillofac Surg Clin North Am       Date:  2017-02       Impact factor: 2.802

6.  Effect of flapless ridge preservation with two different alloplastic materials in sockets with buccal dehiscence defects-volumetric and linear changes.

Authors:  Nadja Naenni; Vitor Sapata; Stefan P Bienz; Minas Leventis; Ronald E Jung; Christoph H F Hämmerle; Daniel S Thoma
Journal:  Clin Oral Investig       Date:  2017-12-26       Impact factor: 3.573

7.  Three-Dimensional Volumetric Changes After Socket Augmentation with Deproteinized Bovine Bone and Collagen Matrix.

Authors:  Thiago Morelli; Shaoping Zhang; Eugenia Monaghan; Kevin L Moss; Brenda Lopez; Julie Marchesan
Journal:  Int J Oral Maxillofac Implants       Date:  2020 May/Jun       Impact factor: 2.804

8.  Alveolar Ridge Conservation by Early Bone Formation After Tooth Extraction in Rabbits. A Histomorphological Study.

Authors:  Mario Cantín; Sergio Olate; Ramón Fuentes; Bélgica Vásquez
Journal:  Int J Morphol       Date:  2015-03       Impact factor: 0.519

9.  Effects of local application of alendronate on early healing of extraction socket in dogs.

Authors:  Nikola Saulacic; Fernando Muñoz; Eizaburo Kobayashi; Vivianne Chappuis; Antonio Gonzáles-Cantalapiedra; Willy Hofstetter
Journal:  Clin Oral Investig       Date:  2019-07-26       Impact factor: 3.573

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Authors:  Daniel Clark; Yogalakshmi Rajendran; Sarmad Paydar; Sunita Ho; Darren Cox; Mark Ryder; John Dollard; Richard T Kao
Journal:  J Periodontol       Date:  2018-04       Impact factor: 6.993

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