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Purpose To introduce a digital workflow for the prediction of facial aesthetics, especially in patients with dentation deformity caused by maxillofacial trauma.Methods Cone-beam computed tomography (CBCT) and three-dimensional facial scans of patients with radiographic prostheses were collected. The aforementioned data were uploaded to ProPlan CMF software and merged to generate a virtual patient with craniofacial hard tissue, realistic facial soft tissue, and remaining dentition. The radiographic prostheses were scanned to form a digital cast, which was fitted with its CBCT image to create the virtual prostheses. Postoperative facial soft tissue was simulated according to the movement of the virtual prostheses. An appropriate virtual diagnostic prosthesis plan was selected by the patient and dentist. Subsequently, prosthetically driven implant guide and restoration were designed and fabricated.Conclusions A virtual patient was successfully constructed. A 4-mm protrusion of the virtual prosthesis was chosen. Subsequently, implant surgery was performed, and dental prostheses were fabricated based on this location. The fusion of the postoperative facial scan and preoperative facial prediction was found to be coincident. This technique can effectively predict facial aesthetic features of patients with maxillofacial trauma, facilitate communication with patients, reduce chairside time, and guide the multidisciplinary design of implant placement and restoration fabrication.
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http://dx.doi.org/10.2186/jpr.JPR_D_22_00112 | DOI Listing |
J Dent Educ
September 2025
Departamento De Odontologia Restauradora, Faculdade de Odontologia de Ribeirão Preto, Universidade De São Paulo, São Paulo, Brasil.
Background: The teaching of occlusal splint therapy in dental education is evolving with the integration of digital workflows. Although digital tools offer operational advantages, conventional methods remain pedagogically relevant. Understanding students' perceptions of both approaches is essential for guiding curriculum innovation.
View Article and Find Full Text PDFBMC Med Inform Decis Mak
September 2025
Emergency Department, Helios Spital, Überlingen, Germany.
Background: The increasing amount of data routinely collected on ICUs poses a challenge for clinicians which is aggravated with data-heavy therapies like Continuous Kidney Replacement Therapy (CKRT). We developed the CKRT Supporting Software Prototype (CKRT-SSP), a clinical decision support system for use before, during and after CKRT. The aim of this user experience (UX) study was to prospectively evaluate CKRT-SSP in terms of usability, user experience, and workload in a simulated ICU setting.
View Article and Find Full Text PDFJ Anesth
September 2025
Community Medicine Education Promotion Office, Faculty of Medicine, Kagawa University Ikenobe, 1750-1, Miki-Cho, Kagawa, 761-0793, Japan.
Generative artificial intelligence (AI) is rapidly transforming perioperative medicine, particularly anesthesiology, by enabling novel applications, such as real-time data synthesis, individualized risk prediction, and automated documentation. These capabilities enhance clinical decision-making, patient communication, and workflow efficiency in the operating room. In education, generative AI offers immersive simulations and tailored learning experiences that improve both technical skills and professional judgment.
View Article and Find Full Text PDFJ Prosthet Dent
September 2025
Associate Professor, Department of Dental Surgery, Faculty of Dental Surgery, University of Malta, Malta. Electronic address:
A digital workflow merging root submergence, immediate dental implant and definitive intermediate abutment placements, and custom healing abutment fabrication to enhance esthetic and biological outcomes in immediate implant procedures is described. The procedure involves a prosthetically driven plan on intraoral and cone beam computed tomography (CBCT) scans, digital planning using a specialized software program, the creation of a surgical guide, and the digital design of custom components. A 3-dimensionally (3D) printed healing abutment was produced by following specific protocols.
View Article and Find Full Text PDFJ Prosthet Dent
September 2025
Adjunct Professor, Dental Research Institute and Department of Prosthodontics, School of Dentistry, Seoul National University, Seoul, Republic of Korea. Electronic address:
This clinical report describes the management of gingival recession and gingival line asymmetry around fixed partial dentures using the biologically oriented preparation technique (BOPT). By modifying the emergence profile of the restorations through the BOPT and incorporating a digital workflow, a stable and esthetic gingival margin was achieved. The report highlights the procedural steps, advantages, and limitations of this approach in the anterior maxillary region.
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