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Reduced behavioral flexibility by aberrant sensory precision in autism spectrum disorder: A neurorobotics experiment

机译:自闭症谱系障碍中异常的感官精度降低了行为灵活性:一个神经机器人实验

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Recently, the importance of the application of computational models utilized in cognitive neuroscience to psychiatric disorders has been recognized. This study utilizes a recurrent neural network model to test aberrant sensory precision, a normative theory of autism spectrum disorder. We particularly focus on the effects of increased and decreased sensory precision on adaptive behavior based on a prediction error minimization mechanism. To distinguish dysfunction at the behavioral and network levels, we employ a humanoid robot driven by a neural network and observe ball-playing interactions with a human experimenter. Experimental results show that behavioral rigidity characteristic of autism spectrum disorder - including stopping movement and repetitive behavior - was generated from both increased and decreased sensory precision, but through different processes at the network level. These results may provide a system-level explanation of different types of behavioral rigidity in psychiatric diseases such as compulsions and stereotypies. The results also support a system-level model for autism spectrum disorder that suggests core deficits in estimating the uncertainty of sensory evidence.
机译:最近,已经认识到将认知神经科学中使用的计算模型应用于精神疾病的重要性。这项研究利用循环神经网络模型来测试异常的感觉精度,这是自闭症谱系障碍的规范理论。我们特别关注基于预测误差最小化机制的感觉精度的提高和降低对自适应行为的影响。为了在行为和网络水平上区分功能障碍,我们采用了由神经网络驱动的人形机器人,并观察与人类实验者的打球互动。实验结果表明,自闭症谱系障碍的行为刚性特征(包括停止运动和重复性行为)是由提高和降低的感官精度产生的,但是是通过网络级别的不同过程产生的。这些结果可能为精神疾病(例如强迫症和刻板印象)中不同类型的行为僵化提供系统级的解释。结果还支持自闭症谱系障碍的系统级模型,该模型在估计感官证据的不确定性时提示核心缺陷。

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