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Accurate estimation of 6-Do F tooth pose in 3D intraoral scans for dental applications using deep learning

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摘要 A critical step in digital dentistry is to accurately and automatically characterize the orientation and position of individual teeth,which can subsequently be used for treatment planning and simulation in orthodontic tooth alignment.This problem remains challenging because the geometric features of different teeth are complicated and vary significantly,while a reliable large-scale dataset is yet to be constructed.In this paper we propose a novel method for automatic tooth orientation estimation by formulating it as a six-degree-of-freedom(6-Do F)tooth pose estimation task.Regarding each tooth as a threedimensional(3D)point cloud,we design a deep neural network with a feature extractor backbone and a two-branch estimation head for tooth pose estimation.Our model,trained with a novel loss function on the newly collected large-scale dataset(10393 patients with 280611 intraoral tooth scans),achieves an average Euler angle error of only 4.780°–5.979°and a translation L1 error of 0.663 mm on a hold-out set of 2598 patients(77870 teeth).Comprehensive experiments show that 98.29%of the estimations produce a mean angle error of less than 15°,which is acceptable for many clinical and industrial applications.
出处 《Frontiers of Information Technology & Electronic Engineering》 SCIE EI CSCD 2024年第9期1240-1249,共10页 信息与电子工程前沿(英文版)
基金 Project supported by the National Natural Science Foundation of China(Nos.11932012 and 62106222) the Zhejiang University-Angelaling Inc.R&D Center for Intelligent Healthcare,the Zhejiang Provincial Public Welfare Research Program(No.LTGY23H140007) the Clinical Research Project of the Chinese Orthodontic Society(No.COS-C2021-09) the Research and Development Project of Stomatology Hospital,Zhejiang University School of Medicine(No.RD2022YFZD01)。
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