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June 1, 2026BMC Oral Health0 citationsOpen Access

Comparison of linear and angular cephalometric measurements in CBCT using semi-automated software and artificial intelligence-generated cephalograms

KOKaan OrhanİEİsmet ErsalıcıNSNora Saif

Key Points

  • This research assesses the reliability of cephalometric measurements using two semi-automated software programs and an AI platform.
  • Cross-sectional reliability study analyzing 29 CBCT scans from Northern Cyprus and Egypt
  • Included eleven measurements assessing vertical and anteroposterior relationships
  • Reliability assessed via intraobserver and interobserver agreement using Bland-Altman plots.
  • Intraobserver reliability showed high consistency across measurements
  • Interobserver agreement had excellent reliability, with ICC values exceeding 0.90 for both software
  • AI platform indicated lower scores for Wits Appraisal and U1-SN angle compared to software systems.

Abstract

BACKGROUND: This study aimed to assess the reliability of cephalometric measurements using CBCTs with two semi-automated software programs (InVivoDental and Romexis) and an artificial intelligence-based platform (Diagnocat). METHODS: This cross-sectional reliability study retrospectively analyzed a total of 29 CBCT scans (15 from Northern Cyprus and 14 from Egypt). Eleven measurements were included to assess vertical relationship, and anteroposterior relationship, using two software programs and an AI-based website. RESULTS: Intraobserver reliability, assessed through Bland-Altman plots, demonstrated high consistency. Interobserver agreement showed excellent reliability for most measurements, with ICC values exceeding 0.90 for both InVivoDental and Romexis software. Most measurements did not show significant differences between the two semi-automated programs and the AI-based algorithms. However, the AI system indicated lower measurements for Wits Appraisal and U1-SN angle compared to the two software systems. CONCLUSION: In conclusion, this study underscores the importance of evaluating the reliability of cephalometric measurements on CBCTs, particularly when utilizing semi-automated software programs and artificial intelligence-based platforms. Our analysis revealed consistent intra-observer repeatability across most measurements. However, it is noteworthy that certain metrics exhibited reduced repeatability when assessed using AI-generated cephalograms, suggesting potential areas for improvement in AI algorithms.

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Cite This Study

Orhan et al. (2026) studied this question.

synapsesocial.com/papers/6a1d216202fbce9130637619https://doi.org/10.1186/s12903-026-08391-7
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