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基于Hifi3D面部模型和临床二维图像的三维面部重建模型准确性评估

Accuracy Evaluation of a Three-Dimensional Face Reconstruction Model Based on the Hifi3D Face Model and Clinical Two-Dimensional Images.

作者信息

Xiao Yujia, Mao Bochun, Nie Jianglong, Liu Jiayi, Wang Shuo, Liu Dawei, Zhou Yanheng

机构信息

Department of Orthodontics, Peking University School and Hospital of Stomatology, National Center for Stomatology, National Clinical Research Center for Oral Diseases, National Engineering Research Center of Oral Biomaterials and Digital Medical Devices, Beijing Key Laboratory of Digital Stomatology, Research Center of Engineering and Technology for Computerized Dentistry Ministry of Health, Beijing 100081, China.

School of Software and Microelectronics, Peking University, Beijing 100091, China.

出版信息

Bioengineering (Basel). 2024 Nov 21;11(12):1174. doi: 10.3390/bioengineering11121174.

Abstract

Three-dimensional (3D) facial models have been increasingly applied in orthodontics, orthognathic surgery, and various medical fields. This study proposed an approach to reconstructing 3D facial models from standard orthodontic frontal and lateral images, providing an efficient way to expand 3D databases. A total of 23 participants (average age 20.70 ± 5.36 years) were enrolled. Based on the Hifi3D face model, 3D reconstructions were generated and compared with corresponding face scans to evaluate their accuracy. Root mean square error (RMSE) values were calculated for the entire face, nine specific facial regions, and eight anatomical landmarks. Clinical feasibility was further assessed by comparing six angular and thirteen linear measurements between the reconstructed and scanned models. The RMSE of the reconstruction model was 2.00 ± 0.38 mm (95% CI: 1.84-2.17 mm). High accuracy was achieved for the forehead, nose, upper lip, paranasal region, and right cheek (mean RMSE < 2 mm). The forehead area showed the smallest deviation, at 1.52 ± 0.88 mm (95% CI: 1.14-1.90 mm). In contrast, the lower lip, chin, and left cheek exhibited average RMSEs exceeding 2 mm. The mean deviation across landmarks was below 2 mm, with the Prn displaying the smallest error at 1.18 ± 1.10 mm (95% CI: 0.71-1.65 mm). The largest discrepancies were observed along the Z-axis (Z > Y > X). Significant differences ( < 0.05) emerged between groups in the nasolabial, nasal, and nasofrontal angles, while the other 13 linear and 3 angular measurements showed no statistical differences ( > 0.05). This study explored the feasibility of reconstructing accurate 3D models from 2D photos. Compared to facial scan models, the Hifi3D face model demonstrated a 2 mm deviation, with potential for enriching 3D databases for subjective evaluations, patient education, and communication. However, caution is advised when applying this model to clinical measurements, especially angle assessments.

摘要

三维(3D)面部模型已越来越多地应用于正畸、正颌外科及各种医学领域。本研究提出了一种从标准正畸正面和侧面图像重建3D面部模型的方法,为扩展3D数据库提供了一种有效途径。共招募了23名参与者(平均年龄20.70±5.36岁)。基于Hifi3D面部模型生成3D重建,并与相应的面部扫描进行比较以评估其准确性。计算了整个面部、九个特定面部区域和八个解剖标志点的均方根误差(RMSE)值。通过比较重建模型和扫描模型之间的六个角度和十三个线性测量值,进一步评估临床可行性。重建模型的RMSE为2.00±0.38毫米(95%置信区间:1.84 - 2.17毫米)。前额、鼻子、上唇、鼻旁区域和右脸颊实现了高精度(平均RMSE < 2毫米)。前额区域偏差最小,为1.52±0.88毫米(95%置信区间:1.14 - 1.90毫米)。相比之下,下唇、下巴和左脸颊的平均RMSE超过2毫米。标志点的平均偏差低于2毫米,鼻前点(Prn)误差最小,为1.18±1.10毫米(95%置信区间:0.71 - 1.65毫米)。沿Z轴观察到的差异最大(Z > Y > X)。鼻唇、鼻和鼻额角组间出现显著差异(< 0.05),而其他13个线性测量值和3个角度测量值无统计学差异(> 0.05)。本研究探索了从二维照片重建精确3D模型的可行性。与面部扫描模型相比,Hifi3D面部模型显示出2毫米的偏差,具有丰富3D数据库用于主观评估、患者教育和沟通的潜力。然而,将该模型应用于临床测量时,尤其是角度评估时,建议谨慎使用。

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