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Purpose:Within subject study aim to compare the overall accuracy and fit of different components for mandibular metallic removable partial denture (RPD) frameworks fabricated by selective laser melting using combined analog-digital, and fully digital impression techniques.
Material and methods. Two RPD frameworks were fabricated for each of the 24 participants using each of the 2 techniques of the 24 participants enrolled, were of mandibular Kennedy class I, the first technique was the combined analog-digital workflow had the analog steps include: a physical impression was made using polyvinyl siloxane, stone casts were made, then the stone cast was scanned with a laboratory scanner to generate a digital cast. The 3Shape CAD software was then used to design a digital RPD, which was fabricated from a cobalt-chroumum alloy by selective laser melting. The second technique was fully digital where an intraoral digital scanner was used to make a definitive scan, which was sent to the 3Shape software for digitally designing the RPD framework and subsequent selective laser melting for fabrication. For both frameworks in the same participant, the same design was used for consistency. To assess the accuracy of fit, based on STL data analysis (intra-oral digital superimposition evaluation), a color map was constructed using non metrology software, and overall fit accuracy and the misfit (distance between each framework component and the reference intra-oral scan) were measured at rest, guiding plane and lingual plate areas.
Full description
Twenty four mandibular bilateral partially edentulous participants aged from 50 to 65 years having mandibular Class I Kennedy classification were selected randomly from the outpatient clinic of the prosthodontic department. The clinical study was explained to the patients and they accept it and an informed consent were signed by all them
For each patient, two different cobalt chromium removable partial denture frameworks were constructed; the first one was fabricated using combined analog-digital workflow (group 1) and the other framework was fabricated using completely digital workflow (group 2) and comparing them through evaluation of:
Two techniques were used to fabricate 48 RPD frameworks in total. Fabrication of cobalt chromium removable partial denture framework using combined analog-digital workflow (group 1)
The Removable partial denture frameworks for group 1 were fabricated as follow:
The first technique was a combined analog-digital technique, in which a physical definitive impression was made and a stone cast was fabricated. a physical impression was made using polyvinyl siloxane impression material. , and a stone cast was poured using Type IV stone . In an edentulous area, border molding was first accomplished using a green modeling plastic impression compound . The impression and stone cast were evaluated critically to ensure quality. The stone cast was then scanned using a laboratory scanner to produce a virtual 3D master model. The 3Shape CAD software was used to design a digital RPD . The RPD framework was designed with an lingual plate mandibular major connector, I bar retentive clasps on the first premolars.
The definitive STL design file was then sent to the Dental Laboratory, to be selective laser melted in Co-Cr alloy.
The Overall fit accuracy and the misfit at some areas where the accuracy measurement was performed, included: The rest/rest seat areas of right and left premolars , the right and left guide plane/plate area , the mandibular major connector area including the superior border of lingual plate area and retentive terminal of I bar clasp.
All measurements were made by a single investigator and were repeated five times. The average error of measurement was approximately 0.002 mm. As a basis for our evaluation of misfit, a distance of 0 to 0.05 mm was considered close contact (no gap), and a distance of 0.05 to 0.31 mm was defined as clinically acceptable fit.
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24 participants in 2 patient groups
There are currently no registered sites for this trial.
Start date
Jan 01, 2023 • 2 years ago
End date
Nov 01, 2023 • 1 year and 6 months ago
Today
May 10, 2025
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Data sourced from clinicaltrials.gov
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