Gaze-Tracking-Based Tests for Autism in Children: A Diagnostic Test Accuracy Systematic Review and Meta-Analysis

自闭症 心理学 医学诊断 接收机工作特性 诊断准确性 诊断试验 自闭症谱系障碍 荟萃分析 考试(生物学) 发展心理学 诊断优势比 凝视 临床心理学 听力学 漏斗图 可能性 认知心理学 鉴定(生物学) 标准化测试 系统回顾 临床实习 相关性 心理测量学 临床诊断 优势比 梅德林 出版偏见 包裹体(矿物)
作者
Delaflor-Wagner Christian Alejandro,Juan Antonio Suárez‐Cuenca,Sofía Lizeth Alcaráz‐Estrada,Mario Antonio Téllez‐González,Ramón Mauricio Coral‐Vázquez,Christian Gabriel Toledo-Lozano,Silvia Garcı́a
出处
期刊:Autism [SAGE Publishing]
卷期号:: 13623613261451896-13623613261451896
标识
DOI:10.1177/13623613261451896
摘要

Atypical gaze patterns are consistently reported in autism, reflecting differences in social attention and interest. Gaze-tracking paradigms provide an objective way to quantify these differences and may serve as early indicators of autism. This diagnostic test accuracy systematic review and meta-analysis evaluated the performance of eye-tracking-based gaze measures in children. Following Preferred Reporting Items for Systematic Reviews and Meta-Analyses of Diagnostic Test Accuracy (PRISMA-DTA) guidance, studies published between 2015 and 2025 that compared gaze-tracking paradigms with standardized autism diagnoses were synthesized. Pooled diagnostic odds ratio (DOR), sensitivity, and specificity were estimated using random-effects and hierarchical summary receiver operating characteristic models. Risk of bias was assessed with QUADAS-2 and funnel plots. Seventeen studies ( n = 4,256) from six countries met the inclusion criteria. Tasks included social-geometric preference, motherese-nonsocial speech, and visual-orienting paradigms analyzed with rule-based or machine-learning methods. The pooled area under the hierarchical summary receiver operating characteristic curve (HSROC AUC) was 0.845; DOR 15.03 (95% CI 8.00–28.50); sensitivity 0.77 (95% CI 0.65–0.85); and specificity 0.80 (95% CI 0.75–0.84). Although heterogeneity was high ( I 2 = 87.78%), effect directions were consistent. Dynamic social stimuli and higher-frequency tracking systems achieved the best performance. Gaze-tracking tests distinguished autistic and nonautistic children across diverse settings, supporting their potential role as a quantitative, observer-independent adjunct for early identification and clinical decision support. Lay abstract Autism is a form of neurodiversity characterized by differences in social communication, sensory processing, and patterns of attention and interest, which often shape how autistic people look at and interpret the world around them. Eye-tracking technology records where a person looks on a screen and how long their gaze remains on elements, such as people, faces, or objects. Because it is objective and does not rely on language or complex instructions, eye-tracking may support earlier identification of autism. This study reviewed 17 research papers published between 2015 and 2025 that explored how eye-tracking distinguishes autistic and nonautistic children. Together, these studies included over 4,000 participants and compared attention to social scenes, like people talking or playing, with attention to nonsocial or geometric patterns. On average, eye-tracking correctly identified autism about 77% of the time and nonautistic children about 80% of the time, with the best results achieved with dynamic social videos and high-quality tracking cameras. These findings suggest that gaze-based measures capture meaningful differences in social attention and could complement existing diagnostic approaches through earlier, more objective assessment.
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