Fit of interim crowns fabricated using photopolymer-jetting 3D printing

Abstract Statement of problem The fit of interim crowns fabricated using 3-dimensional (3D) printing is unknown. Purpose The purpose of this in vitro study was to evaluate the fit of interim crowns fabricated using photopolymer-jetting 3D printing and to compare it with that of milling and compressi...

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Veröffentlicht in:The Journal of prosthetic dentistry 2017-08, Vol.118 (2), p.208-215
Hauptverfasser: Mai, Hang-Nga, DDS, MS, Lee, Kyu-Bok, DDS, PhD, Lee, Du-Hyeong, DDS, PhD
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Sprache:eng
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Zusammenfassung:Abstract Statement of problem The fit of interim crowns fabricated using 3-dimensional (3D) printing is unknown. Purpose The purpose of this in vitro study was to evaluate the fit of interim crowns fabricated using photopolymer-jetting 3D printing and to compare it with that of milling and compression molding methods. Material and methods Twelve study models were fabricated by making an impression of a metal master model of the mandibular first molar. On each study model, interim crowns (N=36) were fabricated using compression molding (molding group, n=12), milling (milling group, n=12), and 3D polymer-jetting methods. The crowns were prepared as follows: molding group, overimpression technique; milling group, a 5-axis dental milling machine; and polymer-jetting group using a 3D printer. The fit of interim crowns was evaluated in the proximal, marginal, internal axial, and internal occlusal regions by using the image-superimposition and silicone-replica techniques. The Mann-Whitney U test and Kruskal-Wallis tests were used to compare the results among groups (α=.05). Results Compared with the molding group, the milling and polymer-jetting groups showed more accurate results in the proximal and marginal regions ( P
ISSN:0022-3913
1097-6841
DOI:10.1016/j.prosdent.2016.10.030