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Background And Objective: Complete denture is a common restorative treatment in dental patients and the design of the core components (major connector and retentive mesh) of complete denture metal base (CDMB) is the basis of successful restoration. However, the automated design process of CDMB has become a challenging task primarily due to the complexity of manual interaction, low personalization, and low design accuracy.
Methods: To solve the existing problems, we develop a computer-aided Segmentation Network-driven CDMB design framework, called CDMB-SegNet, to automatically generate personalized digital design boundaries for complete dentures of edentulous patients. Specifically, CDMB-SegNet consists of a novel upright-orientation adjustment module (UO-AM), a dental feature-driven segmentation network, and a specific boundary-optimization design module (BO-DM). UO-AM automatically identifies key points for locating spatial attitude of the three-dimensional dental model with arbitrary posture, while BO-DM can result in smoother and more personalized designs for complete denture. In addition, to achieve efficient and accurate feature extraction and segmentation of 3D edentulous models with irregular gingival tissues, the light-weight backbone network is also incorporated into CDMB-SegNet.
Results: Experimental results on a large clinical dataset showed that CDMB-SegNet can achieve superior performance over the state-of-the-art methods. Quantitative evaluation (major connector/retentive mesh) showed improved Accuracy (98.54 ± 0.58 %/97.73 ± 0.92 %) and IoU (87.42 ± 5.48 %/70.42 ± 7.95 %), and reduced Maximum Symmetric Surface Distance (4.54 ± 2.06 mm/4.62 ± 1.68 mm), Average Symmetric Surface Distance (1.45 ± 0.63mm/1.28 ± 0.54 mm), Roughness Rate (6.17 ± 1.40 %/6.80 ± 1.23 %) and Vertices Number (23.22 ± 1.85/43.15 ± 2.72). Moreover, CDMB-SegNet shortened the overall design time to around 4 min, which is one tenth of the comparison methods.
Conclusions: CDMB-SegNet is the first intelligent neural network for automatic CDMB design driven by oral big data and dental features. The designed CDMB is able to couple with patient's personalized dental anatomical morphology, providing higher clinical applicability compared with the state-of-the-art methods.
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http://dx.doi.org/10.1016/j.compbiomed.2024.108550 | DOI Listing |
J Prosthodont
September 2025
Department of Oral Health Sciences, Faculty of Dentistry, University of British Columbia, Vancouver, British Columbia, Canada.
This article presents three cases outlining the benefits of utilizing a combination of digital and conventional workflows for the fabrication of immediate complete dentures. This combined digital and conventional approach addresses the recording of denture border extensions, digital articulation, and fabrication of complete dentures.
View Article and Find Full Text PDFCureus
July 2025
Department of Prosthodontics, Chadalawada Krishna Srinivasa Teja Institute of Dental Sciences and Research, Tirupati, IND.
Introduction Accurate determination of occlusal vertical dimension (OVD) is essential for the success of complete denture prostheses, as it influences esthetics, phonetics, comfort, and function. Traditional methods for assessing OVD often lack standardization and can be inconsistent, particularly in completely edentulous patients. Cephalometric analysis offers a radiographic alternative based on stable craniofacial landmarks.
View Article and Find Full Text PDFCommunity Dent Health
September 2025
Department of Prosthodontics, Faculty of Dentistry, Beykent University, Istanbul, Turkey.
Objective: This study aimed to assess the prosthetic status of community-dwelling individuals aged ≥65 years in the city center of Kayseri and evaluate the impact of these factors on their oral health-related quality of life (OHRQoL).
Material And Methods: In total, 457 older adults from Kayseri were included in this cross-sectional study. Data were collected from 21 Family Health Centers (FHCs).
J Funct Biomater
July 2025
Advanced Dental Device Development Institute (A3DI), Kyungpook National University, Daegu 41940, Republic of Korea.
The dimensional accuracy of the intaglio surface of complete dentures fabricated using liquid crystal display (LCD) three-dimensional (3D) printing might be influenced by the build angle and post-processing storage conditions. This study evaluated the effect of build angle and natural light exposure duration on the intaglio surface trueness of maxillary complete denture bases. Standardized denture base designs (2 mm uniform thickness) were fabricated using an LCD 3D printer (Lilivis Print; Huvitz, Seoul, Republic of Korea) at build angles of 0°, 45°, and 90° ( = 7 per group).
View Article and Find Full Text PDFDent J (Basel)
July 2025
Department of Conservative Dentistry, Faculty of Dental Medicine, "Iuliu Hațieganu" University of Medicine and Pharmacy, 400012 Cluj-Napoca, Romania.
: The objective of this study was to evaluate changes in anatomical point position, cranio-cervical posture, and respiratory dimensions following conventional bimaxillary total prosthetic rehabilitation. A prospective, longitudinal, observational, analytical study was conducted on 12 patients, aged 55 to 75 years, at the Department of Dental Prosthetics at the University of Medicine and Pharmacy in Cluj-Napoca. All patients had complete bimaxillary edentulism and received removable dentures as treatment.
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