Effect of Model Body Type and Print Angle on the Accuracy of 3D-Printed Orthodontic Models.

Biomimetics (Basel)

Department of Oral and Craniofacial Sciences, School of Dentistry, University of Missouri-Kansas City, Kansas City, MO 64108, USA.

Published: April 2024

The assortment of low-cost 3D printers for "in-practice" use, e.g., for clear aligner therapies, is ever increasing. To address concerns about the accuracy of orthodontic models produced on such printers when cost-efficient modes of 3D printing are employed, this study examined the effect of print model body type and print angulation on accuracy. Six printing-configuration groups were included: two model types (solid or hollow shell) combined with three print angles (0°, 70°, or 90°) with 10 models/group; all models were printed with 100 µm layer thickness using a digital light processing-based three-dimensional printer. Eleven selected structures and distances were measured on the printed models with a digital microscope and compared to the same measures on a digitized master model. The clinically acceptable range was set at ±0.25 mm difference from the master model for single tooth measurements (intra-tooth) and ±0.5 mm for cross-arch measurements (inter-tooth). For individual measurements across all models, 98% fell within clinical acceptability. For mean measurements within each model group, only canine height for the shell-0° model had a mean difference (-0.26 mm ± 0.03) outside the clinically acceptable range for intra-tooth measurements. Standard deviations for all intra-tooth measurements were within 0.07 mm. While none of the mean inter-tooth measurements exceeded the acceptability range, the standard deviations were larger (0.04 to 0.30 mm). The accuracy of the orthodontic models for clear aligner therapies was not impacted beyond the clinically acceptable range when altering model body type and print angulation to improve efficiency of 3D printing. These findings suggest greater flexibility of the practitioner to alter print settings to address time and cost efficiency in various clinical scenarios and still maintain clinically acceptable model accuracy.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11048263PMC
http://dx.doi.org/10.3390/biomimetics9040217DOI Listing

Publication Analysis

Top Keywords

clinically acceptable
16
model body
12
body type
12
type print
12
orthodontic models
12
acceptable range
12
model
9
clear aligner
8
aligner therapies
8
accuracy orthodontic
8

Similar Publications

Objectives: Past studies have shown the efficacy of spinal targeted drug delivery (TDD) in pain relief, reduction in opioid use, and cost-effectiveness in long-term management of complex chronic pain. We conducted a survey to determine treatment variables associated with patient satisfaction.

Materials And Methods: Patients in a single pain clinic who were implanted with Medtronic pain pumps to relieve intractable pain were identified from our electronic health record.

View Article and Find Full Text PDF

Objective: The prevalence and characteristics of drug-related problems (DRPs) in the cardiovascular surgery unit have not been adequately explored, leaving a gap in our understanding of this critical issue. This study aimed to address this gap by determining the prevalence, characteristics of DRPs and identifying factors associated with their occurrence.

Methods: During a non-consecutive 48-month study period, a retrospective analysis was conducted to investigate DRPs and the interventions carried out by pharmacists for patients undergoing cardiovascular surgery.

View Article and Find Full Text PDF

Purpose: This study aimed to compare different treatment modalities to correct ill-fitted maxillary complete denture either by the conventional relining method or by scanning the relining impression and digitally construct a new denture regarding patient satisfaction, denture retention, and adaptation.

Materials And Methods: Twelve edentulous patients suffering from loose maxillary complete dentures were selected, dentures' borders and fitting surfaces were prepared, and relining impressions were taken, the impressions were scanned and the STL files were used for CAD/CAM milling ( computer aided designing/ computer aided manufacturing) of new maxillary dentures (Group A), then the relining impression went through the conventional laboratory steps to fabricate (Group B) maxillary dentures. Both groups were evaluated regarding patient satisfaction by a specially designed questionnaire, retention values were measured by a digital force gauge at denture insertion appointment and two weeks later, geomagic software was used to evaluate dentures adaptation to oral tissues.

View Article and Find Full Text PDF

Background: To determine outcomes of MRI-assisted radiosurgery (MARS) for salvage brachytherapy using the radioisotope Pd after various upfront treatments including surgery, external beam radiotherapy, and brachytherapy.

Methods: We retrospectively reviewed data for patients who underwent salvage MARS for intraprostatic lesions or prostate bed recurrences from 2016 to 2022. Biochemical recurrence, prostate cancer-specific, and overall survival, and the cumulative incidences of toxicities, were determined by Kaplan-Meier estimates.

View Article and Find Full Text PDF

Purpose: To identify sex-based differences in pathology, outcomes, and complications after hip arthroscopy for femoroacetabular impingement (FAI), and to compare patient-reported outcomes (PRO) scores between males and females.

Methods: The PubMed and MEDLINE databases were searched in September 2024, according to Preferred Reporting Items for Systematic Reviews and Meta-Analyses guidelines. Included studies had data stratified by sex, minimum 2-year patient reported outcome (PRO) scores for hip arthroscopy in the setting of FAI and labral pathology, and a 2014 or later publication date.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!