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Analysis of simultaneous visual and complex neural dynamics during cognitive learning to diagnose ASD

机译:同时分析视觉和复杂的神经在认知学习诊断动态

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The interactions between gaze processing and neural activities mediate cognition. The present paper aims to identify the involvement of visual and neural dynamics in shaping the cognitive behavior in Autism Spectrum Disorder (ASD). Electroencephalogram (EEG) and Eye-tracker signals of ASD and Typically Developing (TD) are recorded while performing two difficulty levels of a maze-based experimental task. During task, the performance metrics, complex neural measures extracted from EEG data using Visibility Graph (VG) algorithm and visual measures extracted from eye-tracker data are analyzed and compared. For both task levels, the cognition processing is examined via performance metrics (reaction-time and poor accuracy), gaze measures (saccade, fixation duration and blinkrate) and VG-based metrics (average weighted degree, clustering coefficient, path length, global efficiency, mutual information). An engagement in cognitive processing in ASD is revealed statistically by high reaction time, poor accuracy, increased fixation duration, raised saccadic amplitude, higher blink rate, reduced average weighted degree, global efficiency, mutual information as well as higher eigenvector centrality and path length. Over the course of repetitive trials, the cognitive improvement is although poor in ASD compared to TDs, the reconfigurations of visual and neural network dynamics revealed activation of Cognitive Learning (CL) in ASD. Furthermore, the correlation of gaze-EEG measures reveal that independent brain region functioning is not impaired but declined mutual interaction of brain regions causes cognitive deficit in ASD. And correlation of EEG-gaze measures with clinical severity measured by Autism Diagnostic Observation Schedule(ADOS) suggest that visual-neural activities reveals social behavior/cognition in ASD. Thus, visual and neural dynamics together support the revelation of the cognitive behavior in ASD.
机译:目光处理和之间的交互协调认知神经活动。论文旨在识别视觉的参与和神经动力学在形成认知行为自闭症谱系障碍(ASD)。脑电图(EEG)和眼动跟踪自闭症的信号,通常发展(TD)记录在执行两个难度水平maze-based的实验任务。性能指标,复杂的神经的措施使用可见性从脑电图数据图(VG)提取算法和视觉措施眼动跟踪数据进行了分析和比较。这两个任务的水平,认知加工研究了通过性能指标(反应时间和可怜的准确性),凝视措施(扫视,固定时间和blinkrate)和VG-based指标(平均加权学位,集群系数、路径长度、全球效率,互信息)。处理在ASD显示统计高反应时间,准确性差,增加了固定时间、眼跳幅度,更高的闪烁速度,降低了平均加权学位,全球效率,互信息以及更高的特征向量中心和路径长度。改善认知能力在ASD虽然贫穷TDs相比,视觉的重新配置需要和神经网络动态显示激活认知学习(CL)在ASD。的相关性表明,gaze-EEG措施独立的大脑区域功能但拒绝相互交互的大脑受损地区导致自闭症认知赤字。EEG-gaze措施与临床的相关性严重的自闭症诊断观测计划(节选)建议visual-neural活动揭示了社会行为/认知在ASD。神经动力学共同支持的启示在ASD的认知行为。

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