自闭症视知觉功能障碍的生物标志物:脑电图研究进展与方向

IF 1 Q4 PSYCHOLOGY Acta Neuropsychologica Pub Date : 2022-02-23 DOI:10.5604/01.3001.0015.8186
Farah Shahnaz Feroz, F. Shahbodin, -. Munir, L. Riza, -. Rasim, Che Ku Nuraini Che Ku Mohd, Z. Jano, Siti Nurul Mahfuzah Mohamad
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引用次数: 0

摘要

随着世界走向第四次工业革命,需要制定神经生理生物标志物,以确保自闭症谱系障碍(ASD)患者视觉感知功能障碍诊断的准确性。使用脑电图的ASD视觉感知功能障碍的生物标志物补充了行为诊断方法,可以更直接地评估功能障碍,识别仅通过行为测量无法揭示的快速内隐神经过程。本文旨在综述ASD患者视觉感知功能障碍5个领域(视觉辨别(VD)、视觉空间关系(VSR)、视觉形态恒定(VFC)、视觉记忆(VM)和视觉封闭(VC))的神经生物标志物。本文有助于研究者对脑电图方法在ASD研究中的发展趋势和进展有新的认识,并发现相关文献的空白。系统检索PubMed文献,报道脑电图研究结果:1)评估ASD患者的严重程度,2)研究ASD视觉感知功能障碍的神经生物标志物。光谱分析、功能连通性分析和事件相关电位(ERP)在现代医学中用于识别区分ASD视觉感知功能障碍严重程度的生物标志物。
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BIOMARKERS OF VISUAL PERCEPTION DYSFUNCTION IN AUTISM: PROGRESS AND DIRECTIONS IN EEG RESEARCH
As the world moves towards the Fourth Industrial Revolution, there is a need for formulations of neurophysiological biomarkers that ensure the accuracy of the diagnosis of visual perception dysfunction in individuals with Autism Spectrum Disorder (ASD). Biomarkers of visual perception dysfunction in ASD using EEG complements behavioral methods of diagnosis and allows for a more direct assessment of the dysfunction, identifying rapid, implicit neural processes that are not revealed through behavioral measures alone. This paper aims to review the neural biomarkers of the five domains of visual perception dysfunction (visual discrimination (VD), visual spatial relations (VSR), visual form constancy (VFC), visual memory (VM) and visual closure (VC)) in individuals with ASD. This paper shall help researchers gain new insight into the current trends and progress in EEG methods in ASD and discover gaps in the subject literature. A systematic literature search on PubMed was conducted to report findings of EEG studies that:1) assessed the severity levels in patients with ASD and 2) investigated the neural biomarkers of visual perception dysfunction in ASD. Spectral analysis, functional connectivity analysis and event-related potential (ERP) are useful in modern medicine to identify the biomarkers that distinguish the levels of the severity of visual perception dysfunction in ASD.
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