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A Step Towards Developing Adaptive Robot-Mediated Intervention Architecture (ARIA) for Children With Autism

机译:迈向为自闭症儿童开发自适应机器人中介干预体系(ARIA)的步骤

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Emerging technology, especially robotic technology, has been shown to be appealing to children with autism spectrum disorders (ASD). Such interest may be leveraged to provide repeatable, accurate and individualized intervention services to young children with ASD based on quantitative metrics. However, existing robot-mediated systems tend to have limited adaptive capability that may impact individualization. Our current work seeks to bridge this gap by developing an adaptive and individualized robot-mediated technology for children with ASD. The system is composed of a humanoid robot with its vision augmented by a network of cameras for real-time head tracking using a distributed architecture. Based on the cues from the child's head movement, the robot intelligently adapts itself in an individualized manner to generate prompts and reinforcements with potential to promote skills in the ASD core deficit area of early social orienting. The system was validated for feasibility, accuracy, and performance. Results from a pilot usability study involving six children with ASD and a control group of six typically developing (TD) children are presented.
机译:新兴技术,尤其是机器人技术,已被证明对患有自闭症谱系障碍(ASD)的儿童具有吸引力。可以利用这种兴趣基于定量指标为患有ASD的幼儿提供可重复,准确和个性化的干预服务。然而,现有的机器人介导的系统倾向于具有有限的自适应能力,这可能会影响个性化。我们当前的工作旨在通过为ASD儿童开发一种自适应的,个性化的机器人介导技术来弥合这一差距。该系统由人形机器人组成,其人像视野通过摄像机网络增强,可使用分布式架构进行实时头部跟踪。根据孩子头部运动的提示,该机器人以个性化的方式智能地自我适应,以产生提示和强化,从而有可能在早期社交导向的ASD核心缺陷领域提升技能。该系统经过可行性,准确性和性能验证。介绍了一项涉及6名ASD儿童和6名典型发育(TD)儿童的对照组的可用性试验研究的结果。

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