2021
DOI: 10.3390/ma14020344
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Fracture Load of an Orthodontic Appliance for Robin Sequence Treatment in a Digital Workflow

Abstract: CAD/CAM technologies and materials have the potential to improve the treatment of Robin Sequence with orthodontic appliances (Tübingen palatal plate, TPP). However, studies on the provided suitability and safety are lacking. The present study evaluates CAD/CAM technologies and materials for implementation into the workflow for producing these orthodontic appliances (TPPs), manufactured by different techniques and materials: additive manufacturing (AM) and subtractive manufacturing (SM) technologies vs. convent… Show more

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Cited by 22 publications
(36 citation statements)
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References 18 publications
(44 reference statements)
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“…The effect of the build angle was not evaluated in this study. This is known to influence not only the accuracy but also the manufacturing time of vat polymerization techniques [2,3,11,32]. Vertical positioning, leads to an increase of layers, and thus, the sum of repeated errors or inaccuracies grows [2].…”
Section: Vat Polymerization Techniquesmentioning
confidence: 99%
See 4 more Smart Citations
“…The effect of the build angle was not evaluated in this study. This is known to influence not only the accuracy but also the manufacturing time of vat polymerization techniques [2,3,11,32]. Vertical positioning, leads to an increase of layers, and thus, the sum of repeated errors or inaccuracies grows [2].…”
Section: Vat Polymerization Techniquesmentioning
confidence: 99%
“…SM and SLA should be employed for applications were a greater surface finishing and higher mechanical properties are necessary. The TPP for example, requires a high flexural strength [11,21]. From the other side, DLP should be prioritized in cases where a faster manufacturing time and higher trueness and precision are necessary, for example prototyping of the TPP and manufacturing of cleft palatal plates.…”
Section: Clinical Interpretation and Acceptancementioning
confidence: 99%
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