ProgramMaster Logo
Conference Tools for 2021 TMS Annual Meeting & Exhibition
Login
Register as a New User
Help
Submit An Abstract
Propose A Symposium
Presenter/Author Tools
Organizer/Editor Tools
About this Abstract
Meeting 2021 TMS Annual Meeting & Exhibition
Symposium Advances in Biomaterials for 3D Printing of Scaffolds and Tissues
Presentation Title Design and Evaluations System for 3D-printed Dental Implants Based on Deep Neural Networks
Author(s) Pei-Ching Kung, Chai-Wei Hsu, An-Cheng Yang, Nan-Yow Chen, Nien-Ti Tsou
On-Site Speaker (Planned) Pei-Ching Kung
Abstract Scope In this study, a framework of deep neural networks for the custom design and evaluation of 3D-printed dental implants was proposed. The network consisted of three parts: Firstly, the evaluator successfully substitutes the mechano-regulatory method, which is one of the promising algorithms to numerically predict the corresponding implant performance indexes. High correlation coefficients were achieved for the evaluator part (greater than 0.94). Secondly, the designer well predicts the possible geometric features by giving the expected performance indexes, where high correlation coefficients can also be achieved. Finally, the generator builds a corresponding implant based on the geometric features predicted by the designer. The IoU (Intersection over Union) score of 0.997 for the generator part was also obtained. The current work provides a proof of concept that deep learning approaches can substitute the time-dependent, highly-complex, and multi-physical models/theories. Moreover, it provides an in-depth understanding of implants design with no prior professional knowledge.
Proceedings Inclusion? Planned:

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

A Bilayered GelMA/PEGDA-based Nerve Conduit with Supportive Cells for Peripheral Nerve Regeneration
A Novel Dual-layer Hydrogel/Cell Conduit Fabrication Method for Tissue Engineering
Design and Evaluations System for 3D-printed Dental Implants Based on Deep Neural Networks
Laser-based Powder-bed Fusion Strategies for the Fabrication of Cellular Scaffolds with a Fine Resolution
Mechanical Properties and Biodegradability of Porous Mg and Zn Scaffolds Fabricated by Power Bed Laser Fusion for Biomedical Applications
Mechanical Properties and Biodegradability of Porous PLA/Mg and PLA/Zn Scaffolds Fabricated by Fused Filament Deposition for Biomedical Applications

Questions about ProgramMaster? Contact programming@programmaster.org