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Evaluation of primary stability of self-tapping and non-self-tapping dental implants. A 12-week clinical study

  • Aleksa Marković
  • , José Luís Calvo-Guirado
  • , Zoran Lazić
  • , Gerardo Gómez-Moreno
  • , Dejan Ćalasan
  • , Javier Guardia
  • , Snježana Čolic
  • , Antonio Aguilar-Salvatierra
  • , Bojan Gačić
  • , Rafael Delgado-Ruiz
  • , Bojan Janjić
  • , Tijana Mišić
  • University of Belgrade
  • University of Murcia
  • Military Medical Academy
  • University of Granada

Research output: Contribution to journalArticlepeer-review

69 Scopus citations

Abstract

Purpose: The aim of this study was to investigate the relationship between surgical techniques and implant macro-design (self-tapping/non-self-tapping) for the optimization of implant stability in the low-density bone present in the posterior maxilla using resonance frequency analysis (RFA). Materials and Methods: A total of 102 implants were studied. Fifty-six self-tapping BlueSkyBredent® (Bredent GmbH&Co.Kg®, Senden, Germany) and 56 non-self-tapping Standard Plus Straumann® (Institut Straumann AG®, Waldenburg, Switzerland) were placed in the posterior segment of the maxilla. Implants of both types were placed in sites prepared with either lateral bone-condensing or with bone-drilling techniques. Implant stability measurements were performed using RFA immediately after implant placement and weekly during a 12-week follow-up period. Results: Both types of implants placed after bone condensing achieved significantly higher stability immediately after surgery, as well as during the entire 12-week observation period compared with those placed following bone drilling. After bone condensation, there were no significant differences in primary stability or in implant stability after the first week between both implant types. From 2 to 12 postoperative weeks, significantly higher stability was shown by self-tapping implants. After bone drilling, self-tapping implants achieved significantly higher stability than non-self-tapping implants during the entire follow-up period. Conclusions: The outcomes of the present study indicate that bone drilling is not an effective technique for improving implant stability and, following this technique, the use of self-tapping implants is highly recommended. Implant stability optimization in the soft bone can be achieved by lateral bone-condensing technique, regardless of implant macro-design.

Original languageEnglish
Pages (from-to)341-349
Number of pages9
JournalClinical Implant Dentistry and Related Research
Volume15
Issue number3
DOIs
StatePublished - Jun 2013

Keywords

  • Dental implants
  • Implant stability
  • Resonance frequency analysis
  • Surgical technique

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