Teeth Model Reconstruction Based on Multiple View Image Capture

Author:

Ali Faten Imad,Tarik Al-dahan Ziad

Abstract

Abstract Various dentistry fields such as teeth treatment, dental restoration, and denture production require the application of three-dimensional intraoral scanners to create digital impressions. This study presents a method to reconstruct a three-dimensional teeth crown by utilizing a prototype intraoral custom design with publicly available software. The system consists of custom containing an endoscope camera and two light sources (white LED and blue laser), a personal control computer, and photogrammetric open source software packages (VisualSFM, CMVS/PMVS, and MeshLab). Photogrammetry methods were used to acquire the three-dimensional teeth model with high precision. Multi images have been captured of the interesting teeth using the custom system from different angles. The capturing process was done in two phases using one illumination source each time. The captured images are loading to Photogrammetry software to generate the three-dimensional dense point cloud. A comparison has been made of the resulted dense point cloud at each phase. Finally, the dense point cloud is loading to MeshLab software to generate the three-dimensional mesh that can be utilized in CAD/CAM software. The results have shown the superiority of using blue illumination with the photogrammetry software that shows good accuracy of teeth crown details and measurements that are related to the reconstruction algorithm which yields in more number of 3D points of the object to generate good three-dimensional meshes of the teeth crown. This study helps to offer low cost, simple design, and a user-friendly system to generate a three-dimensional teeth crown.

Publisher

IOP Publishing

Subject

General Medicine

Reference20 articles.

1. Visual Turing test for computer vision systems;Donald;National Academy of Sciences of the United State of America,2015

2. 3D map reconstruction with sensor kinect: Searching for solution applicable to small mobile robots

3. A Survey of Passive 3D Reconstruction Methods on the Basis of More than One Image;Mariusz;Machine GRAPHICS and VISION,2014

4. A Comparative Analysis between Active and Passive Techniques for Underwater 3D Reconstruction of Close-Range Objects;Gianfranco;Sensors,2013

5. Guidelines on the use of structure‐from‐motion photogrammetry in geomorphic research

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Creating a Digital 3D Model of the Dental Cast Using Structure-from-Motion Photogrammetry Technique;International Journal of Online and Biomedical Engineering (iJOE);2023-03-14

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