Literature DB >> 24835178

Digital facial dysmorphology for genetic screening: Hierarchical constrained local model using ICA.

Qian Zhao1, Kazunori Okada2, Kenneth Rosenbaum3, Lindsay Kehoe3, Dina J Zand3, Raymond Sze4, Marshall Summar3, Marius George Linguraru5.   

Abstract

Down syndrome, the most common single cause of human birth defects, produces alterations in physical growth and mental retardation. If missed before birth, the early detection of Down syndrome is crucial for the management of patients and disease. However, the diagnostic accuracy for pediatricians prior to cytogenetic results is moderate and the access to specialists is limited in many social and low-economic areas. In this study, we propose a simple, non-invasive and automated framework for Down syndrome detection based on disease-specific facial patterns. Geometric and local texture features are extracted based on automatically detected anatomical landmarks to describe facial morphology and structure. To accurately locate the anatomical facial landmarks, a hierarchical constrained local model using independent component analysis (ICA) is proposed. We also introduce a data-driven ordering method for selecting dominant independent components in ICA. The hierarchical structure of the model increases the accuracy of landmark detection by fitting separate models to different groups. Then the most representative features are selected and we also demonstrate that they match clinical observations. Finally, a variety of classifiers are evaluated to discriminate between Down syndrome and healthy populations. The best performance achieved 0.967 accuracy and 0.956 F1 score using combined features and linear discriminant analysis. The method was also validated on a dataset with mixed genetic syndromes and high performance (0.970 accuracy and 0.930 F1 score) was also obtained. The promising results indicate that our method could assist in Down syndrome screening effectively in a simple, non-invasive way, and extensible to detection of other genetic syndromes.
Copyright © 2014 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Computer-aided diagnosis; Down syndrome; Hierarchical constrained local model; Independent component analysis; Machine learning

Mesh:

Year:  2014        PMID: 24835178     DOI: 10.1016/j.media.2014.04.002

Source DB:  PubMed          Journal:  Med Image Anal        ISSN: 1361-8415            Impact factor:   8.545


  14 in total

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6.  A Deep Invertible 3-D Facial Shape Model for Interpretable Genetic Syndrome Diagnosis.

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8.  Williams-Beuren syndrome in diverse populations.

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9.  Deep learning-based facial image analysis in medical research: a systematic review protocol.

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