Temperature Changes (ΔT) in Correlation with Number of Implant Osteotomy Preparations in Human Cadaver Tibiae, Comparing Osseodensification (OD) Burs in Clockwise (CW) versus Counterclockwise (CCW) Mode

Nikolaos Soldatos, Amanda Heydari, Le Roy Horton, Shayda Sarrami, Luke Nordlie, Dongseok Choi, Robin Weltman

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

(1) Background: OD burs are used in two different modes: (i) CW and (ii) CCW. The purpose of the study was to evaluate the ΔT during the preparation of implant osteotomies in a four-way interaction. (2) Methods: Three hundred and sixty osteotomies were prepared at 12 mm depth in human cadaver tibiae. The ΔT values were calculated similarly to the method used in two previous studies carried out by our group. Four different variables were evaluated for their effect on ΔT. (3) Results: A four-way interaction was observed in the CCW mode, allowing for 1000 RPM to have the least effect in both modes. However, in the CCW mode the use of 3.0 and 4.0 burs after 23 osteotomies showed a statistically significant increase in ΔT, and significant chatter, compared to the CW mode. In the CCW mode, the ΔT was increased significantly as the diameter of the burs increased in 800 and 1200 RPM. (4) Conclusions: The synergistic effect of drills’ diameter, CCW mode, 800 and 1200 RPM, and bur usage (over 23 times) had a significant effect on ΔT, which exceeded 47 °C. One thousand (1000) RPM had the least effect in both modes. The 3.0 and 4.0 burs in the CCW mode drastically increased the temperature and produced significant chatter.

Original languageEnglish (US)
Article number237
JournalJournal of Functional Biomaterials
Volume15
Issue number8
DOIs
StatePublished - Aug 2024

Keywords

  • cancellous bone
  • chatter
  • clockwise mode
  • cortical bone
  • counterclockwise mode
  • dental implants
  • human cadaver tibiae
  • osseodensification burs
  • temperature changes

ASJC Scopus subject areas

  • Biomaterials
  • Biomedical Engineering

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