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An affordable compact humanoid robot for autism spectrum disorder interventions in children

机译:一种价格合理的紧凑型人形机器人,用于儿童自闭症谱系障碍的干预

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Autism Spectrum Disorder impacts an ever-increasing number of children. The disorder is marked by social functioning that is characterized by impairment in the use of nonverbal behaviors, failure to develop appropriate peer relationships and lack of social and emotional exchanges. Providing early intervention through the modality of play therapy has been effective in improving behavioral and social outcomes for children with autism. Interacting with humanoid robots that provide simple emotional response and interaction has been shown to improve the communication skills of autistic children. In particular, early intervention and continuous care provide significantly better outcomes. Currently, there are no robots capable of meeting these requirements that are both low-cost and available to families of autistic children for in-home use. This paper proposes the piloting the use of robotics as an improved diagnostic and early intervention tool for autistic children that is affordable, non-threatening, durable, and capable of interacting with an autistic child. This robot has the ability to track the child with its 3 degree of freedom (DOF) eyes and 3-DOF head, open and close its 1-DOF beak and 1-DOF each eyelids, raise its 1-DOF each wings, play sound, and record sound. These attributes will give it the ability to be used for the diagnosis and treatment of autism. As part of this project, the robot and the electronic and control software have been developed, and integrating semi-autonomous interaction, teleoperation from a remote healthcare provider and initiating trials with children in a local clinic are in progress.
机译:自闭症谱系障碍影响着越来越多的儿童。该疾病的特征是社交功能,其特征在于非语言行为的使用受损,无法发展适当的同伴关系以及缺乏社交和情感交流。通过游戏疗法的形式提供早期干预已有效改善了自闭症儿童的行为和社会后果。与提供简单的情绪反应和互动的人形机器人互动已被证明可以改善自闭症儿童的沟通技巧。特别是,早期干预和持续护理可显着改善预后。当前,没有能够满足这些要求的低成本且既可用于自闭症儿童家庭在家中使用的机器人。本文提出了对使用机器人技术作为自闭症儿童的一种改进的诊断和早期干预工具进行试点的方法,该工具负担得起,无威胁,经久耐用并且能够与自闭症儿童互动。该机器人可以跟踪3个自由度(DOF)眼睛和3个DOF头部的孩子,打开和关闭其1个DOF喙和每个1个DOF的眼睑,抬起其1个DOF的翅膀,播放声音,并录制声音。这些属性将使其能够用于自闭症的诊断和治疗。作为该项目的一部分,已经开发了机器人以及电子和控制软件,并且正在集成半自主交互,远程医疗保健提供者的远程操作以及在当地诊所对儿童进行的试验。

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