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

机译:用于儿童自闭症谱系障碍的经济实惠的小型人形机器人

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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:自闭症谱系障碍会影响越来越多的儿童。这种疾病是通过社会运作的标志,这些功能是在使用非语言行为的损害的特征,未能培养适当的同伴关系和缺乏社会和情感交流。通过游戏疗法的方式提供早期干预,这一直有效地改善了自闭症儿童的行为和社会成果。与人形机器人进行互动,提供了简单的情绪反应和互动,以提高自闭症儿童的沟通技巧。特别是,早期干预和持续护理提供了更好的结果。目前,没有能够满足这些要求的机器人,这些要求既有低成本,可供自闭症儿童家庭供携带内使用。本文提出了将机器人驾驶为自闭症儿童的改进诊断和早期干预工具,这是经济实惠,无威胁,耐用的,并且能够与自闭症儿童进行互动。该机器人有能力跟踪儿童的3级自由(DOF)眼睛和3-DOF头,打开并关闭其每台眼睑的1-DOF喙和1-DOF,每个翅膀升高其1-DOF,发出声音,记录声音。这些属性将使能力用于诊断和治疗自闭症。作为该项目的一部分,已经开发了机器人和电子和控制软件,并集成了半自动互动,从远程医疗保健提供者的遥控,并在当地诊所中发起与儿童的试验正在进行中。

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