Computer-vision analysis of craniofacial dysmorphology in 22q11.2 deletion syndrome and psychosis spectrum disorders.

IF 4.1 2区 医学 Q1 CLINICAL NEUROLOGY Journal of Neurodevelopmental Disorders Pub Date : 2024-06-25 DOI:10.1186/s11689-024-09547-8
David R Roalf, Donna M McDonald-McGinn, Joelle Jee, Mckenna Krall, T Blaine Crowley, Paul J Moberg, Christian Kohler, Monica E Calkins, Andrew J D Crow, Nicole Fleischer, R Sean Gallagher, Virgilio Gonzenbach, Kelly Clark, Ruben C Gur, Emily McClellan, Daniel E McGinn, Arianna Mordy, Kosha Ruparel, Bruce I Turetsky, Russell T Shinohara, Lauren White, Elaine Zackai, Raquel E Gur
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Abstract

Background: Minor physical anomalies (MPAs) are congenital morphological abnormalities linked to disruptions of fetal development. MPAs are common in 22q11.2 deletion syndrome (22q11DS) and psychosis spectrum disorders (PS) and likely represent a disruption of early embryologic development that may help identify overlapping mechanisms linked to psychosis in these disorders.

Methods: Here, 2D digital photographs were collected from 22q11DS (n = 150), PS (n = 55), and typically developing (TD; n = 93) individuals. Photographs were analyzed using two computer-vision techniques: (1) DeepGestalt algorithm (Face2Gene (F2G)) technology to identify the presence of genetically mediated facial disorders, and (2) Emotrics-a semi-automated machine learning technique that localizes and measures facial features.

Results: F2G reliably identified patients with 22q11DS; faces of PS patients were matched to several genetic conditions including FragileX and 22q11DS. PCA-derived factor loadings of all F2G scores indicated unique and overlapping facial patterns that were related to both 22q11DS and PS. Regional facial measurements of the eyes and nose were smaller in 22q11DS as compared to TD, while PS showed intermediate measurements.

Conclusions: The extent to which craniofacial dysmorphology 22q11DS and PS overlapping and evident before the impairment or distress of sub-psychotic symptoms may allow us to identify at-risk youths more reliably and at an earlier stage of development.

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计算机视觉分析 22q11.2 缺失综合征和精神病谱系障碍的颅面畸形。
背景:轻微生理异常(MPAs)是与胎儿发育中断有关的先天性形态异常。MPAs在22q11.2缺失综合征(22q11DS)和精神病谱系障碍(PS)中很常见,可能代表了早期胚胎发育的中断,这可能有助于识别这些疾病中与精神病有关的重叠机制。方法:本文收集了22q11DS(n = 150)、PS(n = 55)和发育典型(TD;n = 93)个体的二维数码照片。照片使用两种计算机视觉技术进行分析:(1)DeepGestalt 算法(Face2Gene (F2G))技术,用于识别是否存在基因介导的面部疾病;(2)Emotrics--一种半自动机器学习技术,用于定位和测量面部特征:结果:F2G 能可靠地识别出 22q11DS 患者;PS 患者的面部与包括脆性 X 和 22q11DS 在内的几种遗传病相匹配。所有 F2G 分数的 PCA 导出因子载荷表明,独特和重叠的面部模式与 22q11DS 和 PS 都有关系。与TD相比,22q11DS的眼睛和鼻子的区域面部测量值较小,而PS的测量值介于两者之间:22q11DS和PS的颅面畸形重叠程度,以及在亚精神病症状损害或困扰出现之前的明显程度,可能会让我们更可靠地识别高危青少年,并在他们的早期发展阶段进行识别。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.60
自引率
4.10%
发文量
58
审稿时长
>12 weeks
期刊介绍: Journal of Neurodevelopmental Disorders is an open access journal that integrates current, cutting-edge research across a number of disciplines, including neurobiology, genetics, cognitive neuroscience, psychiatry and psychology. The journal’s primary focus is on the pathogenesis of neurodevelopmental disorders including autism, fragile X syndrome, tuberous sclerosis, Turner Syndrome, 22q Deletion Syndrome, Prader-Willi and Angelman Syndrome, Williams syndrome, lysosomal storage diseases, dyslexia, specific language impairment and fetal alcohol syndrome. With the discovery of specific genes underlying neurodevelopmental syndromes, the emergence of powerful tools for studying neural circuitry, and the development of new approaches for exploring molecular mechanisms, interdisciplinary research on the pathogenesis of neurodevelopmental disorders is now increasingly common. Journal of Neurodevelopmental Disorders provides a unique venue for researchers interested in comparing and contrasting mechanisms and characteristics related to the pathogenesis of the full range of neurodevelopmental disorders, sharpening our understanding of the etiology and relevant phenotypes of each condition.
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