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Updated: Sep 18, 2025

Real-Time Dynamic Navigation System for the Precise Quad-Zygomatic Implant Placement in a Patient with a Severely Atrophic Maxilla
Published on: October 18, 2021
Dynamic navigation system accuracy in orthodontic miniscrew insertion in the palatal vault: a prospective single-arm
Aim:
The aim of the present study was to evaluate the accuracy of dynamic navigation (DN) in miniscrew insertion in the palatal vault by comparing the deviation between planned and placed miniscrew positions. The secondary outcome was to evaluate the correlation between the number of miniscrews inserted and both the accuracy variables and the duration of interventions.
Materials And Methods:
Twenty-three subjects were included in the study and each had two miniscrews inserted using a DN system (46 miniscrews inserted overall). Preoperative STL and DICOM files were matched to planned miniscrews insertion and a postoperative CBCT was performed immediately afterward to measure the deviations between the planned and placed miniscrews, evaluating four variables: Entry-3D, Apex-3D, Apex-vertical, and angular deviation. The duration of intervention was also calculated. Descriptive statistics and Pearson correlation coefficient were performed; the P value was set at ≤ 0.05.
Results:
The mean Entry-3D deviation was 2.55 mm; the mean Apex-3D deviation was 3.11 mm; the mean Apex-vertical deviation was 0.87 mm; and the mean angular deviation was 8.50 degrees. The mean duration of the intervention was 2:75 min:sec. A statistically significant correlation was found only between the number of surgeries and the duration of the interventions, which decreased over time.
Conclusions:
It is possible to conclude that DN is a viable alternative to miniscrew insertion in the palatal vault even if there is a wide deviation range. There is no significant correlation between the accuracy variables and the number of surgeries. In contrast, the duration of the interventions shortens over time.

