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Simulating Behaviors of Children with Autism Spectrum Disorders Through Reversal of the Autism Diagnosis Process

机译:通过逆转自闭症诊断过程模拟自闭症谱系障碍儿童的行为

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Children affected by Autism Spectrum Disorders (ASD) exhibit behaviors that may vary drastically from child to child. The goal of achieving accurate computer simulations of behavioral responses to given stimuli for different ASD severities is a difficult one, but it could unlock interesting applications such as informing the algorithms of agents designed to interact with those individuals. This paper demonstrates a novel research direction for high-level simulation of behaviors of children with ASD by exploiting the structure of available ASD diagnosis tools. Building on the observation that the simulation process is in fact the reverse of the diagnosis process, we take advantage of the structure of the Autism Diagnostic Observation Schedule (ADOS), a state-of-the-art standardized tool used by therapists to diagnose ASD, in order to build our ADOS-Based Autism Simulator (ABASim). We first define the ADOS-Based Autism Space (ABAS), a feature space that captures individual behavioral differences. Using this space as a high-level behavioral model, the simulator is able to stochastically generate behavioral responses to given stimuli, consistent with provided child descriptors, namely ASD severity, age and language ability. Our method is informed by and generalizes from real ADOS data collected on 67 children with different ASD severities, whose correlational profile is used as our basis for the generation of the feature vectors used to select behaviors.
机译:受自闭症谱系障碍(ASD)影响的孩子表现出的行为可能因孩子而异。实现针对不同ASD严重程度的给定刺激的行为响应的准确计算机模拟的目标是一个困难的目标,但是它可以解锁有趣的应用程序,例如通知设计为与这些人进行交互的代理算法。本文通过利用可用的ASD诊断工具的结构,为高水平模拟ASD儿童行为提供了一个新的研究方向。基于模拟过程实际上与诊断过程相反的观察结果,我们利用了自闭症诊断观察计划表(ADOS)的结构,这是治疗师用来诊断ASD的最先进的标准化工具,以便构建基于ADOS的自闭症模拟器(ABASim)。我们首先定义基于ADOS的自闭症空间(ABAS),这是一个捕获个体行为差异的特征空间。使用此空间作为高级行为模型,模拟器能够根据给定的子项描述符(即ASD严重程度,年龄和语言能力)随机生成对给定刺激的行为响应。我们的方法基于对67名具有不同ASD严重程度的儿童收集的真实ADOS数据并从中进行了概括,这些数据的相关性作为我们用于选择行为的特征向量生成的基础。

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