Institute for Experimental Psychology, Heinrich Heine University Düsseldorf, Düsseldorf, Germany.
Elife. 2024 Jun 24;13:RP94946. doi: 10.7554/eLife.94946.
Autism spectrum disorder (ASD) presents a range of challenges, including heightened sensory sensitivities. Here, we examine the idea that sensory overload in ASD may be linked to issues with efference copy mechanisms, which predict the sensory outcomes of self-generated actions, such as eye movements. Efference copies play a vital role in maintaining visual and motor stability. Disrupted efference copies hinder precise predictions, leading to increased reliance on actual feedback and potential distortions in perceptions across eye movements. In our first experiment, we tested how well healthy individuals with varying levels of autistic traits updated their mental map after making eye movements. We found that those with more autistic traits had difficulty using information from their eye movements to update the spatial representation of their mental map, resulting in significant errors in object localization. In the second experiment, we looked at how participants perceived an object displacement after making eye movements. Using a trans-saccadic spatial updating task, we found that those with higher autism scores exhibited a greater bias, indicating under-compensation of eye movements and a failure to maintain spatial stability during saccades. Overall, our study underscores efference copy's vital role in visuo-motor stability, aligning with Bayesian theories of autism, potentially informing interventions for improved action-perception integration in autism.
自闭症谱系障碍 (ASD) 表现出一系列挑战,包括更高的感官敏感性。在这里,我们研究了 ASD 中的感官过载可能与传出副本机制问题有关的观点,传出副本机制预测了自我产生的动作(如眼球运动)的感官结果。传出副本在维持视觉和运动稳定性方面起着至关重要的作用。传出副本的中断会阻碍精确预测,导致对实际反馈的更大依赖,并可能导致眼球运动过程中的感知扭曲。在我们的第一个实验中,我们测试了具有不同自闭症特征水平的健康个体在进行眼球运动后如何更新他们的心理地图。我们发现,那些具有更多自闭症特征的人很难使用他们眼球运动的信息来更新他们心理地图的空间表示,从而导致物体定位的显著错误。在第二个实验中,我们观察了参与者在进行眼球运动后如何感知物体的位移。使用跨眼跳空间更新任务,我们发现那些自闭症得分较高的人表现出更大的偏差,这表明眼球运动的补偿不足,并且在眼跳过程中无法维持空间稳定性。总的来说,我们的研究强调了传出副本在视动稳定性中的重要作用,与自闭症的贝叶斯理论一致,可能为改善自闭症中的动作感知整合提供干预措施。