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A multifunctional scannable mounting device for computer guided implant surgery: An in vitro study.

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A new multifunctional apparatus (MFA) scan body shows high accuracy in dental implant scanning, comparable to standard scan bodies. This digital workflow offers an alternative to traditional cone beam computed tomography (CBCT) for evaluating implant placement accuracy.

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Area of Science:

  • Digital Dentistry
  • Implantology
  • CAD/CAM in Dentistry

Background:

  • The increasing digitization of dentistry necessitates streamlined digital workflows and reduced chairside times.
  • Evaluating new tools like the multifunctional apparatus (MFA) scan body is crucial for advancing digital dental applications.
  • The accuracy of MFA scan bodies in clinical scanning remains to be fully elucidated.

Purpose of the Study:

  • To compare the accuracy of a novel multifunctional apparatus (MFA) scan body against a standard commercially available scan body (SBIO).
  • To quantify horizontal, vertical, and angular deviations associated with MFA scan body usage in an in vitro setting.

Main Methods:

  • Sixteen edentulous maxillary models with planned implant placements were utilized.
  • Intraoral scanning was performed using both MFA and SBIO scan bodies.
  • Digital models were created, superimposed, and analyzed for linear and angular deviations using 3D scanning.

Main Results:

  • No statistically significant differences in accuracy were observed between the MFA and SBIO scan bodies across all deviation measurements.
  • The study reported high precision, with confidence intervals indicating minimal deviations in linear and angular measurements.

Conclusions:

  • The novel MFA scan body demonstrates high accuracy, performing comparably to the standard SBIO scan body.
  • This study presents a viable alternative scanning and back-programming technique for assessing implant placement accuracy, potentially reducing reliance on post-placement cone beam computed tomography (CBCT).