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Published in: Clinical Oral Investigations 7/2016

01-09-2016 | Original Article

A new method for the evaluation of the accuracy of full-arch digital impressions in vitro

Authors: Jan-Frederik Güth, Daniel Edelhoff, Josef Schweiger, Christine Keul

Published in: Clinical Oral Investigations | Issue 7/2016

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Abstract

Objectives

Introducing a new approach to evaluate the accuracy of digital impression methods for full-arch scans, avoiding “best-fit alignment.”

Materials and methods

A lower jaw model with a straight metal bar between the second molars of both quadrants was directly digitized using an intraoral scanner (True Definition, TRD, n = 12) and indirectly digitized (D810, CON, n = 12) after impression and plaster cast. A dataset of the bar from a coordinate measuring machine served as reference (REF). Datasets obtained from test groups were analyzed using inspection software to determine the aberration of the bar length, the linear shift (in X-, Y-, Z-axis) and the angle deviation (α overall, α coronal, α horizontal) caused by the digitalization method. Mann–Whitney U and unpaired two-sample Student’s t test were implemented to detect differences. The level of significance was set at 5 %.

Results

Concerning the bar length, no significant differences were found between groups. In view of the linear shift, CON showed significantly higher values than TRD in Y-axis (p = 0.003) and in Z-axis (p = 0.040). Regarding the angle measurement, TRD showed significant smaller values than CON for α overall (p = 0.006) and for α coronal (p = 0.005).

Conclusions

This in vitro study shows that intraoral scanning systems seem to show the same or even higher accuracy than the conventional impression with subsequent indirect digitalization.

Clinical relevance

Intraoral scanners have proven excellent accuracy for single teeth or small spans. However, insufficient data is available about their accuracy for full-arch scans. The presented new approach seems to be suitable to precisely analyze differences in the accuracy of different digitalization methods without using best-fit alignment.
Literature
1.
go back to reference Beuer F, Schweiger J, Edelhoff D (2008) Digital dentistry: an overview of recent developments for CAD/CAM generated restorations. Br Dent J 204:505–511CrossRefPubMed Beuer F, Schweiger J, Edelhoff D (2008) Digital dentistry: an overview of recent developments for CAD/CAM generated restorations. Br Dent J 204:505–511CrossRefPubMed
2.
go back to reference Miyazaki T, Hotta Y, Kunii J, Kuriyama S, Tamaki Y (2009) A review of dental CAD/CAM: current status and future perspectives from 20 years of experience. Dent Mater J 28:44–56CrossRefPubMed Miyazaki T, Hotta Y, Kunii J, Kuriyama S, Tamaki Y (2009) A review of dental CAD/CAM: current status and future perspectives from 20 years of experience. Dent Mater J 28:44–56CrossRefPubMed
3.
go back to reference Bosch G, Ender A, Mehl A (2014) A 3-dimensional accuracy analysis of chairside CAD/CAM milling processes. J Prosthet Dent 112:1425–31CrossRefPubMed Bosch G, Ender A, Mehl A (2014) A 3-dimensional accuracy analysis of chairside CAD/CAM milling processes. J Prosthet Dent 112:1425–31CrossRefPubMed
4.
go back to reference Ender A, Mehl A (2013) Accuracy of complete-arch dental impressions: a new method of measuring trueness and precision. J Prosthet Dent 109:121–128CrossRefPubMed Ender A, Mehl A (2013) Accuracy of complete-arch dental impressions: a new method of measuring trueness and precision. J Prosthet Dent 109:121–128CrossRefPubMed
5.
go back to reference Quaas S, Rudolph H, Luthardt RG (2007) Direct mechanical data acquisition of dental impressions for the manufacturing of CAD/CAM restorations. J Dent 35:903–908CrossRefPubMed Quaas S, Rudolph H, Luthardt RG (2007) Direct mechanical data acquisition of dental impressions for the manufacturing of CAD/CAM restorations. J Dent 35:903–908CrossRefPubMed
6.
go back to reference Guth JF, Keul C, Stimmelmayr M, Beuer F, Edelhoff D (2013) Accuracy of digital models obtained by direct and indirect data capturing. Clin Oral Investig 17:1201–1208CrossRefPubMed Guth JF, Keul C, Stimmelmayr M, Beuer F, Edelhoff D (2013) Accuracy of digital models obtained by direct and indirect data capturing. Clin Oral Investig 17:1201–1208CrossRefPubMed
7.
go back to reference Keul C, Stawarczyk B, Erdelt KJ, Beuer F, Edelhoff D, Guth JF (2014) Fit of 4-unit FDPs made of zirconia and CoCr-alloy after chairside and labside digitalization—a laboratory study. Dent Mater 30:400–407CrossRefPubMed Keul C, Stawarczyk B, Erdelt KJ, Beuer F, Edelhoff D, Guth JF (2014) Fit of 4-unit FDPs made of zirconia and CoCr-alloy after chairside and labside digitalization—a laboratory study. Dent Mater 30:400–407CrossRefPubMed
8.
9.
go back to reference Christensen GJ (2008) Will digital impressions eliminate the current problems with conventional impressions? J Am Dent Assoc 139:761–763CrossRefPubMed Christensen GJ (2008) Will digital impressions eliminate the current problems with conventional impressions? J Am Dent Assoc 139:761–763CrossRefPubMed
10.
go back to reference Chandran DT, Jagger DC, Jagger RG, Barbour ME (2010) Two- and three-dimensional accuracy of dental impression materials: effects of storage time and moisture contamination. Biomed Mater Eng 20:243–249PubMed Chandran DT, Jagger DC, Jagger RG, Barbour ME (2010) Two- and three-dimensional accuracy of dental impression materials: effects of storage time and moisture contamination. Biomed Mater Eng 20:243–249PubMed
11.
go back to reference Al-Bakri IA, Hussey D, Al-Omari WM (2007) The dimensional accuracy of four impression techniques with the use of addition silicone impression materials. J Clin Dent 18:29–33PubMed Al-Bakri IA, Hussey D, Al-Omari WM (2007) The dimensional accuracy of four impression techniques with the use of addition silicone impression materials. J Clin Dent 18:29–33PubMed
12.
go back to reference Mehl A, Ender A, Mormann W, Attin T (2009) Accuracy testing of a new intraoral 3D camera. Int J Comput Dent 12:11–28PubMed Mehl A, Ender A, Mormann W, Attin T (2009) Accuracy testing of a new intraoral 3D camera. Int J Comput Dent 12:11–28PubMed
13.
go back to reference Boeddinghaus M, Breloer ES, Rehmann P, Wostmann B (2015) Accuracy of single-tooth restorations based on intraoral digital and conventional impressions in patients. Clin Oral Investig. doi:10.1007/s00784-015-1430-7 PubMed Boeddinghaus M, Breloer ES, Rehmann P, Wostmann B (2015) Accuracy of single-tooth restorations based on intraoral digital and conventional impressions in patients. Clin Oral Investig. doi:10.​1007/​s00784-015-1430-7 PubMed
14.
go back to reference Ender A, Mehl A (2011) Full arch scans: conventional versus digital impressions—an in-vitro study. Int J Comput Dent 14:11–21PubMed Ender A, Mehl A (2011) Full arch scans: conventional versus digital impressions—an in-vitro study. Int J Comput Dent 14:11–21PubMed
15.
go back to reference Patzelt SB, Emmanouilidi A, Stampf S, Strub JR, Att W (2014) Accuracy of full-arch scans using intraoral scanners. Clin Oral Investig 18:1687–1694CrossRefPubMed Patzelt SB, Emmanouilidi A, Stampf S, Strub JR, Att W (2014) Accuracy of full-arch scans using intraoral scanners. Clin Oral Investig 18:1687–1694CrossRefPubMed
16.
go back to reference Flugge TV, Schlager S, Nelson K, Nahles S, Metzger MC (2013) Precision of intraoral digital dental impressions with iTero and extraoral digitization with the iTero and a model scanner. Am J Orthod Dentofac Orthop 144:471–478CrossRef Flugge TV, Schlager S, Nelson K, Nahles S, Metzger MC (2013) Precision of intraoral digital dental impressions with iTero and extraoral digitization with the iTero and a model scanner. Am J Orthod Dentofac Orthop 144:471–478CrossRef
17.
go back to reference Ender A, Mehl A (2013) Influence of scanning strategies on the accuracy of digital intraoral scanning systems. Int J Comput Dent 16:11–21PubMed Ender A, Mehl A (2013) Influence of scanning strategies on the accuracy of digital intraoral scanning systems. Int J Comput Dent 16:11–21PubMed
18.
go back to reference Grünheid T, McCarthy SD, Larson BE (2014) Clinical use of a direct chairside oral scanner: an assessment of accuracy, time, and patient acceptance. Am J Orthod Dentofac Orthop 146:673–82CrossRef Grünheid T, McCarthy SD, Larson BE (2014) Clinical use of a direct chairside oral scanner: an assessment of accuracy, time, and patient acceptance. Am J Orthod Dentofac Orthop 146:673–82CrossRef
19.
go back to reference Giménez B, Özcan M, Martínez-Rus F, Pradíes G (2015) Accuracy of a digital impression system based on active triangulation technology with blue light for implants: effect of clinically relevant parameters. Implant Dent 24:498–504CrossRefPubMed Giménez B, Özcan M, Martínez-Rus F, Pradíes G (2015) Accuracy of a digital impression system based on active triangulation technology with blue light for implants: effect of clinically relevant parameters. Implant Dent 24:498–504CrossRefPubMed
20.
go back to reference Giménez B, Pradíes G, Martínez-Rus F, Özcan M (2015) Accuracy of two digital implant impression systems based on confocal microscopy with variations in customized software and clinical parameters. Int J Oral Maxillofac Implants 30:56–64PubMed Giménez B, Pradíes G, Martínez-Rus F, Özcan M (2015) Accuracy of two digital implant impression systems based on confocal microscopy with variations in customized software and clinical parameters. Int J Oral Maxillofac Implants 30:56–64PubMed
21.
go back to reference Ender A, Mehl A (2015) In-vitro evaluation of the accuracy of conventional and digital methods of obtaining full-arch dental impressions. Quintessence Int 46:9–17PubMed Ender A, Mehl A (2015) In-vitro evaluation of the accuracy of conventional and digital methods of obtaining full-arch dental impressions. Quintessence Int 46:9–17PubMed
22.
go back to reference 23 Accuracy (trueness and precision) of measurement methods and results—part 1: general principles and definitions (ISO 5725–1:1994) 23 Accuracy (trueness and precision) of measurement methods and results—part 1: general principles and definitions (ISO 5725–1:1994)
23.
go back to reference van der Meer WJ, Andriessen FS, Wismeijer D, Ren Y (2012) Application of intra-oral dental scanners in the digital workflow of implantology. PLoS One 7, e43312CrossRefPubMedPubMedCentral van der Meer WJ, Andriessen FS, Wismeijer D, Ren Y (2012) Application of intra-oral dental scanners in the digital workflow of implantology. PLoS One 7, e43312CrossRefPubMedPubMedCentral
24.
go back to reference Seelbach P, Brueckel C, Wostmann B (2013) Accuracy of digital and conventional impression techniques and workflow. Clin Oral Investig 17:1759–1764CrossRef Seelbach P, Brueckel C, Wostmann B (2013) Accuracy of digital and conventional impression techniques and workflow. Clin Oral Investig 17:1759–1764CrossRef
25.
go back to reference Balkenhol M, Haunschild S, Erbe C, Wöstmann B (2010) Influence of prolonged setting time on permanent deformation of elastomeric impression materials. J Prosthet Dent 103:288–294CrossRefPubMed Balkenhol M, Haunschild S, Erbe C, Wöstmann B (2010) Influence of prolonged setting time on permanent deformation of elastomeric impression materials. J Prosthet Dent 103:288–294CrossRefPubMed
26.
go back to reference Sahin S, Cehreli MC (2001) The significance of passive framework fit in implant prosthodontics: current status. Implant Dent 10:85–92CrossRefPubMed Sahin S, Cehreli MC (2001) The significance of passive framework fit in implant prosthodontics: current status. Implant Dent 10:85–92CrossRefPubMed
27.
go back to reference Giménez B, Özcan M, Martínez-Rus F, Pradíes G (2015) Accuracy of a digital impression system based on active wavefront sampling technology for implants considering operator experience, implant angulation, and depth. Clin Implant Dent Relat Res 17(1):e54–64CrossRefPubMed Giménez B, Özcan M, Martínez-Rus F, Pradíes G (2015) Accuracy of a digital impression system based on active wavefront sampling technology for implants considering operator experience, implant angulation, and depth. Clin Implant Dent Relat Res 17(1):e54–64CrossRefPubMed
Metadata
Title
A new method for the evaluation of the accuracy of full-arch digital impressions in vitro
Authors
Jan-Frederik Güth
Daniel Edelhoff
Josef Schweiger
Christine Keul
Publication date
01-09-2016
Publisher
Springer Berlin Heidelberg
Published in
Clinical Oral Investigations / Issue 7/2016
Print ISSN: 1432-6981
Electronic ISSN: 1436-3771
DOI
https://doi.org/10.1007/s00784-015-1626-x

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