Literature DB >> 15898941

Crestal bone changes around titanium implants. Part I: A retrospective radiographic evaluation in humans comparing two non-submerged implant designs with different machined collar lengths.

Michael P Hänggi1, Daniel C Hänggi, John D Schoolfield, Jürg Meyer, David L Cochran, Joachim S Hermann.   

Abstract

BACKGROUND: Experimental studies demonstrated that peri-implant crestal hard and soft tissues are significantly influenced in their apico-coronal position by the rough/smooth implant border as well as the microgap/ interface between implant and abutment/restoration. The aim of this study was to evaluate radiographically the crestal bone level changes around two types of implants, one with a 2.8 mm smooth machined coronal length and the other with 1.8 mm collar.
METHODS: In 68 patients, a total of 201 non-submerged titanium implants (101 with a 1.8 mm, 100 with a 2.8 mm long smooth coronal collar) were placed with their rough/smooth implant border at the bone crest level. From the day of surgery up until 3 years after implant placement crestal bone levels were analyzed digitally using standardized radiographs.
RESULTS: Bone remodeling was most pronounced during the unloaded, initial healing phase and did not significantly differ between the two types of implants over the entire observation period (P >0.20). Crestal bone loss for implants placed in patients with poor oral hygiene was significantly higher than in patients with adequate or good plaque control (P <0.005). Furthermore, a tendency for additional crestal bone loss was detected in the group of patients who had been diagnosed with aggressive periodontitis prior to implant placement (P = 0.058). In both types of implants, sand-blasted, large grit, acid-etched (SLA) surfaced implants tended to have slightly less crestal bone loss compared to titanium plasma-sprayed (TPS) surfaced implants, but the difference was not significant (P >0.30).
CONCLUSION: The implant design with the shorter smooth coronal collar had no additional bone loss and may help to reduce the risk of an exposed metal implant margin in areas of esthetic concern.

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Year:  2005        PMID: 15898941     DOI: 10.1902/jop.2005.76.5.791

Source DB:  PubMed          Journal:  J Periodontol        ISSN: 0022-3492            Impact factor:   6.993


  13 in total

1.  Resorption of labial bone in maxillary anterior implant.

Authors:  Young-Bum Cho; Seung-Jin Moon; Chae-Heon Chung; Hee-Jung Kim
Journal:  J Adv Prosthodont       Date:  2011-06-30       Impact factor: 1.904

2.  Randomised study for the 1-year crestal bone maintenance around modified diameter implants with different loading protocols: a radiographic evaluation.

Authors:  Matteo Danza; Pietro Tortora; Alessandro Quaranta; Vittoria Perrotti; Iole Vozza; Adriano Piattelli
Journal:  Clin Oral Investig       Date:  2009-07-15       Impact factor: 3.573

3.  Comparison of Crestal Bone Loss along Two Implant Crest Module Designs.

Authors:  M M Goswami
Journal:  Med J Armed Forces India       Date:  2011-07-21

4.  Radiographic Evaluation of Crestal Bone Loss Around Dental Implants in Maxilla and Mandible: One Year Prospective Clinical Study.

Authors:  Muhamed Ajanović; Adis Hamzić; Sead Redžepagić; Alma Kamber-Ćesir; Lejla Kazazić; Selma Tosum
Journal:  Acta Stomatol Croat       Date:  2015-06

5.  The influence of thread geometry on implant osseointegration under immediate loading: a literature review.

Authors:  Hyo-Sook Ryu; Cheol Namgung; Jong-Ho Lee; Young-Jun Lim
Journal:  J Adv Prosthodont       Date:  2014-12-17       Impact factor: 1.904

6.  Impact of machined versus structured implant shoulder designs on crestal bone level changes: a randomized, controlled, multicenter study.

Authors:  Daniel Rothamel; Maria Heinz; Daniel Ferrari; Alfons Eissing; Henrik Holtmann; Lara Schorn; Tim Fienitz
Journal:  Int J Implant Dent       Date:  2022-07-16

7.  Radiographic Vertical Bone Loss Evaluation around Dental Implants Following One Year of Functional Loading.

Authors:  Aar Rasouli Ghahroudi; Ar Talaeepour; A Mesgarzadeh; Ar Rokn; A Khorsand; Nn Mesgarzadeh; Mj Kharazi Fard
Journal:  J Dent (Tehran)       Date:  2010-06-30

8.  Impact of crestal and subcrestal implant placement upon changes in marginal peri-implant bone level. A systematic review.

Authors:  H Pellicer-Chover; M Díaz-Sanchez; D Soto-Peñaloza; M-A Peñarrocha-Diago; L Canullo; D Peñarrocha-Oltra
Journal:  Med Oral Patol Oral Cir Bucal       Date:  2019-09-01

9.  Assessing double Acid-etched implants submitted to orthodontic forces and used as prosthetic anchorages in partially edentulous patients.

Authors:  Rugani de Cravero Marta; Ibañez Juan Carlos
Journal:  Open Dent J       Date:  2008-03-08

10.  Comparative evaluation of osseointegrated dental implants based on platform-switching concept: influence of diameter, length, thread shape, and in-bone positioning depth on stress-based performance.

Authors:  Luigi Baggi; Michele Di Girolamo; Giuseppe Vairo; Gianpaolo Sannino
Journal:  Comput Math Methods Med       Date:  2013-06-19       Impact factor: 2.238

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