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LMVSegRNN和Poseidon3D:解决3D牙齿表面正畸扫描中具有挑战性的牙齿分割案例。

LMVSegRNN and Poseidon3D: Addressing Challenging Teeth Segmentation Cases in 3D Dental Surface Orthodontic Scans.

作者信息

Kubík Tibor, Španěl Michal

机构信息

Department of Computer Graphics and Multimedia, Brno University of Technology, Božetěchova 2, 612 66 Brno, Czech Republic.

TESCAN 3DIM, s.r.o., Libušina tř./21a, 623 00 Brno, Czech Republic.

出版信息

Bioengineering (Basel). 2024 Oct 11;11(10):1014. doi: 10.3390/bioengineering11101014.

Abstract

The segmentation of teeth in 3D dental scans is difficult due to variations in teeth shapes, misalignments, occlusions, or the present dental appliances. Existing methods consistently adhere to geometric representations, omitting the perceptual aspects of the inputs. In addition, current works often lack evaluation on anatomically complex cases due to the unavailability of such datasets. We present a projection-based approach towards accurate teeth segmentation that operates in a detect-and-segment manner locally on each tooth in a multi-view fashion. Information is spatially correlated via recurrent units. We show that a projection-based framework can precisely segment teeth in cases with anatomical anomalies with negligible information loss. It outperforms point-based, edge-based, and Graph Cut-based geometric approaches, achieving an average weighted IoU score of 0.97122±0.038 and a Hausdorff distance at 95 percentile of 0.49012±0.571 mm. We also release Poseidon's Teeth 3D (Poseidon3D), a novel dataset of real orthodontic cases with various dental anomalies like teeth crowding and missing teeth.

摘要

在3D牙科扫描中,由于牙齿形状的变化、错位、咬合或现有的牙科器具,牙齿分割很困难。现有方法始终坚持几何表示,忽略了输入的感知方面。此外,由于缺乏此类数据集,当前的工作往往缺乏对解剖结构复杂病例的评估。我们提出了一种基于投影的方法来进行精确的牙齿分割,该方法以多视图方式在每个牙齿上以检测和分割的方式局部操作。信息通过循环单元在空间上相关联。我们表明,基于投影的框架可以在解剖结构异常的情况下精确分割牙齿,信息损失可忽略不计。它优于基于点、基于边缘和基于图割的几何方法,平均加权交并比分数达到0.97122±0.038,95%百分位数处的豪斯多夫距离为0.49012±0.571毫米。我们还发布了Poseidon's Teeth 3D(Poseidon3D),这是一个包含各种牙齿异常(如牙齿拥挤和缺牙)的真实正畸病例的新颖数据集。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd28/11505287/1c7c61c1f777/bioengineering-11-01014-g001.jpg

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