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Error analysis of stages involved in CBCT-guided implant placement with surgical guides when different printing technologies are used

Authors :
Brandon Yeager
Gülce Çakmak
Fengyun Zheng
William Michael Johnston
Burak Yilmaz
Source :
The Journal of Prosthetic Dentistry.
Publication Year :
2023
Publisher :
Elsevier BV, 2023.

Abstract

STATEMENT OF PROBLEM Digital light processing (DLP), continuous liquid interface printing (CLIP), and stereolithography (SLA) technologies enable 3-dimensional (3D) printing of surgical guides. However, how their accuracy compares and how accuracy may affect subsequent steps in guided surgery is unclear. PURPOSE The purpose of this in vitro study was to investigate the fabrication and seating accuracy of surgical guides printed by using DLP, SLA, and CLIP technologies and evaluate the positional deviation of the osteotomy site and placed implant compared with the digital implant plan. MATERIAL AND METHODS Twenty-one polyurethane models were divided into 3 groups and used to plan implants and design surgical guides. The guides were fabricated by using DLP, SLA, or CLIP 3D printers (n=7) and scanned, and the scan file was compared with the digital design file to analyze the fabrication accuracy at the intaglio and overall external surfaces using root mean square (RMS) values. The triple scan protocol was used to evaluate the seating accuracy of the guides on their respective models. Osteotomies were prepared on models by using the guides followed by a microcomputed tomography image of each osteotomy. The implants were placed through the guides, the scan bodies were tightened to implants, and the models were scanned to obtain the images of placed implant position. Osteotomy and placed implant images were used to calculate the entry point, apex, and long axis deviations from the planned implant position with a software program. A 2-way repeated-measures ANOVA of the RMS data was used to analyze printing and seating trueness, and homogeneity of variance analyses were used at each surface for precision. A 3-way repeated-measures ANOVA was used to analyze distance deviations over the stages (osteotomy and final implant) and locations studied, and a 2-way repeated-measures ANOVA was used for angular deviations. Homogeneity of variance analyses were performed for precision (α=.05). RESULTS The 3D printer type significantly affected the trueness of the guide at the intaglio surface (P

Details

ISSN :
00223913
Database :
OpenAIRE
Journal :
The Journal of Prosthetic Dentistry
Accession number :
edsair.doi.dedup.....bccdebab2fe3f16b66328cd9a3522ff8
Full Text :
https://doi.org/10.1016/j.prosdent.2022.11.018