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视觉噪声对自闭症谱系障碍中轮廓整合和注视分配的影响。

Visual Noise Effect on Contour Integration and Gaze Allocation in Autism Spectrum Disorder.

作者信息

Mihaylova Milena Slavcheva, Bocheva Nadejda Bogdanova, Totev Tsvetalin Totev, Staykova Svetla Nikolaeva

机构信息

Department of Sensory Neurobiology, Institute of Neurobiology, Bulgarian Academy of Sciences, Sofia, Bulgaria.

Department of Psychiatry and Medical Psychology, Medical University of Sofia, Sofia, Bulgaria.

出版信息

Front Neurosci. 2021 Feb 9;15:623663. doi: 10.3389/fnins.2021.623663. eCollection 2021.

Abstract

Contradictory results have been obtained in the studies that compare contour integration abilities in Autism Spectrum Disorders (ASDs) and typically developing individuals. The present study aimed to explore the limiting factors of contour integration ability in ASD and verify the role of the external visual noise by a combination of psychophysical and eye-tracking approaches. To this aim, 24 children and adolescents with ASD and 32 age-matched participants with typical development had to detect the presence of contour embedded among similar Gabor elements in a Yes/No procedure. The results obtained showed that the responses in the group with ASD were not only less accurate but also were significantly slower compared to the control group at all noise levels. The detection performance depended on the group differences in addition to the effect of the intellectual functioning of the participants from both groups. The comparison of the agreement and accuracy of the responses in the double-pass experiment showed that the results of the participants with ASD are more affected by the increase of the external noise. It turned out that the internal noise depends on the level of the added external noise: the difference between the two groups was non-significant at the low external noise and significant at the high external noise. In accordance with the psychophysical results, the eye-tracking data indicated a larger gaze allocation area in the group with autism. These findings may imply higher positional uncertainty in ASD due to the inability to maintain the information of the contour location from previous presentations and interference from noise elements in the contour vicinity. Psychophysical and eye-tracking data suggest lower efficiency in using stimulus information in the ASD group that could be caused by fixation instability and noisy and unstable perceptual template that affects noise filtering.

摘要

在比较自闭症谱系障碍(ASD)患者和正常发育个体的轮廓整合能力的研究中,得到了相互矛盾的结果。本研究旨在探讨ASD患者轮廓整合能力的限制因素,并通过心理物理学和眼动追踪方法相结合来验证外部视觉噪声的作用。为此,24名患有ASD的儿童和青少年以及32名年龄匹配的正常发育参与者必须在“是/否”程序中检测嵌入在类似Gabor元素中的轮廓的存在。所得结果表明,在所有噪声水平下,ASD组的反应不仅准确性较低,而且与对照组相比明显较慢。除了两组参与者智力功能的影响外,检测性能还取决于组间差异。双通实验中反应一致性和准确性的比较表明,ASD参与者的结果受外部噪声增加的影响更大。结果表明,内部噪声取决于添加的外部噪声水平:在低外部噪声时两组之间的差异不显著,而在高外部噪声时差异显著。根据心理物理学结果,眼动追踪数据表明自闭症组的注视分配区域更大。这些发现可能意味着ASD患者的位置不确定性更高,这是由于无法保留先前呈现的轮廓位置信息以及轮廓附近噪声元素的干扰。心理物理学和眼动追踪数据表明,ASD组在使用刺激信息方面效率较低,这可能是由注视不稳定以及影响噪声过滤的嘈杂和不稳定的感知模板引起的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7d9/7900628/cd00b3044442/fnins-15-623663-g001.jpg

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