Altered category learning and reduced generalization in autistic adults

IF 5.3 2区 医学 Q1 BEHAVIORAL SCIENCES
Autism Research Pub Date : 2024-12-16 DOI:10.1002/aur.3286
Jaana Van Overwalle, Stephanie Van der Donck, Birte Geusens, Bart Boets, Johan Wagemans
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引用次数: 0

Abstract

Individuals with autism spectrum condition (ASC) are suggested to experience difficulties with categorization and generalization. However, empirical studies have mainly focused on one process at a time, and neglected underlying neural mechanisms. Here, we investigated categorization and generalization at a behavioral and neural level in 38 autistic and 38 neurotypical (NT) adults. By presenting shapes sampled from an artificial multidimensional stimulus space, we investigated (1) behavioral and neural underpinnings of category learning and (2) behavioral generalization of trained categorization to both an extended version of the stimulus space and a novel stimulus space. Our previous findings showed that individuals with autism were slower in category learning. In this study, we demonstrate that this slower learning in autism was not related to differences in applied categorization strategy. In contrast, electroencephalography recordings during training did reveal a reduced amplitude of the N1 component in the right occipital temporal cortex after stimulus presentation in autistic participants, which suggests atypical categorical proficiency. In addition, we observed delayed and higher activation in the frontal regions after receiving (negative) feedback in the autistic group, potentially suggesting more explicit feedback processing or a higher salience of prediction errors in autism. Finally, autistic and NT individuals were able to generalize their learned categorization after training. However, when generalizing to a novel set of shapes, autistic individuals were significantly less accurate. Reduced generalization significantly correlated with increased intolerance to uncertainty scores. This multi-level approach reveals behavioral and neural differences in learning and generalization that could be related to clinical symptoms in autism.

自闭症成人类别学习改变及泛化程度降低。
自闭症谱系障碍(ASC)患者被认为在分类和概括方面存在困难。然而,实证研究主要集中于一个过程,而忽略了潜在的神经机制。在这里,我们研究了 38 名自闭症患者和 38 名神经典型(NT)成人在行为和神经水平上的分类和概括能力。通过呈现从人工多维刺激空间采样的形状,我们研究了:(1)分类学习的行为和神经基础;(2)训练分类对扩展版刺激空间和新刺激空间的行为泛化。我们之前的研究结果表明,自闭症患者的分类学习速度较慢。在本研究中,我们证明自闭症患者的学习速度较慢与应用分类策略的差异无关。相反,训练期间的脑电图记录显示,自闭症参与者在刺激呈现后,右枕颞皮层的 N1 分量振幅降低,这表明他们的分类能力不典型。此外,我们还观察到自闭症患者在接受(负面)反馈后,额叶区域的激活延迟且更高,这可能表明自闭症患者的反馈处理更明确,或预测错误的显著性更高。最后,自闭症患者和非自闭症患者在训练后都能将学到的分类方法进行泛化。然而,在对一组新的形状进行归纳时,自闭症患者的准确性明显较低。泛化能力的降低与对不确定性的不容忍度得分的增加明显相关。这种多层次方法揭示了学习和泛化过程中的行为和神经差异,这些差异可能与自闭症的临床症状有关。
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
Autism Research
Autism Research 医学-行为科学
CiteScore
8.00
自引率
8.50%
发文量
187
审稿时长
>12 weeks
期刊介绍: AUTISM RESEARCH will cover the developmental disorders known as Pervasive Developmental Disorders (or autism spectrum disorders – ASDs). The Journal focuses on basic genetic, neurobiological and psychological mechanisms and how these influence developmental processes in ASDs.
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