Department of Human Genetics, KU Leuven, Leuven, Belgium; email:
Medical Imaging Research Center, UZ Leuven, Leuven, Belgium.
Annu Rev Biomed Data Sci. 2022 Aug 10;5:19-42. doi: 10.1146/annurev-biodatasci-122120-111413. Epub 2022 Apr 19.
Deviation from a normal facial shape and symmetry can arise from numerous sources, including physical injury and congenital birth defects. Such abnormalities can have important aesthetic and functional consequences. Furthermore, in clinical genetics distinctive facial appearances are often associated with clinical or genetic diagnoses; the recognition of a characteristic facial appearance can substantially narrow the search space of potential diagnoses for the clinician. Unusual patterns of facial movement and expression can indicate disturbances to normal mechanical functioning or emotional affect. Computational analyses of static and moving 2D and 3D images can serve clinicians and researchers by detecting and describing facial structural, mechanical, and affective abnormalities objectively. In this review we survey traditional and emerging methods of facial analysis, including statistical shape modeling, syndrome classification, modeling clinical face phenotype spaces, and analysis of facial motion and affect.
偏离正常的面部形状和对称性可能有多种来源,包括身体损伤和先天性出生缺陷。这些异常可能会产生重要的美学和功能后果。此外,在临床遗传学中,独特的面部外观通常与临床或遗传诊断相关;识别出特征性的面部外观可以大大缩小临床医生潜在诊断的搜索空间。不寻常的面部运动和表情模式可能表明正常机械功能或情感影响受到干扰。对静态和动态 2D 和 3D 图像的计算分析可以通过客观地检测和描述面部结构、机械和情感异常来为临床医生和研究人员提供帮助。在这篇综述中,我们调查了面部分析的传统和新兴方法,包括统计形状建模、综合征分类、临床面部表型空间建模以及面部运动和情感分析。