DIGITAL CUSTOM DENTURE DESIGN WITH NEW ABRASIVE COMPUTER TOMOGRAPHY AND RAPID PROTOTYPING TECHNOLOGIES

Author:

CHANG C. C.1,LEE M. Y.2,KU Y. C.3

Affiliation:

1. Department of Mechanical Engineering, Kun-Shan University of Technology, Tainan, Taiwan

2. Department of Mechanical Engineering, Chang Gung University, Taoyuan, Taiwan

3. Department of Prosthetic Dentistry, Chang Gung Memorial Hospital, Taoyuan, Taiwan

Abstract

The fixed partial denture produced by conventional method is greatly relied on the skill and experience of dental technician. Its quality and accuracy depends mostly on the technician's subjective judgment. In addition, the manual process involves many procedures that require a long time to complete. Most important, it does not preserve any quantitative information for future retrieval. In this article, a new device for scanning denture images and reconstructing 3D digital information of dental model by abrasive computer tomography (ACT) was designed in-house and proposed. The fixed partial denture was then produced by the rapid prototyping (RP) and computer numerical control (CNC) machining methods based on ACT scanned digital information. A force feedback sculptor (FreeForm system, Sensible Technologies Inc., USA) accompany with 3D Touch technology was applied to modify the morphology design of denture. It enables the dentist to perform digital manipulation of denture profile with real-time and user-friendly human interactive operation without relying on CAD/CAM technician or dental technician. In this article, the comparison of conventional manual operation and digital manufacture using both RP and CNC machining technologies for denture production was presented. In addition, a digital custom denture manufacturing protocol integrating proposed computer abrasive teeth profile scanning, computer-aided denture design, 3D touchable force feedback feature modification and advanced denture manufacturing techniques were suggested. These proposed methods provide solid evidence that digital design and manufacturing technologies may become a new avenue for custom-made denture design, analysis, and production in 21th century.

Publisher

National Taiwan University

Subject

Biomedical Engineering,Bioengineering,Biophysics

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1. Multiple-object segmentation by using a destructive 3D digitizer;Journal of Physics: Conference Series;2022-09-01

2. Addressing the Complexity of Biomaterials by Means of Biomimetic Computer Aided Design;Microsystems for Enhanced Control of Cell Behavior;2016

3. Medical Imaging-Aided Design of Personalized Devices;Handbook on Advanced Design and Manufacturing Technologies for Biomedical Devices;2013

4. Study and Improvement of a Destructive 3D Digitizer Based on Grinding Technique;Key Engineering Materials;2010-05

5. An overview of in vitro abrasive finishing & CAD/CAM of bioceramics in restorative dentistry;International Journal of Machine Tools and Manufacture;2006-07

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