首页> 外文期刊>ACM transactions on accessible computing >Design of a Haptic-Gripper Virtual Reality System (Hg) for Analyzing Fine Motor Behaviors in Children with Autism
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Design of a Haptic-Gripper Virtual Reality System (Hg) for Analyzing Fine Motor Behaviors in Children with Autism

机译:用于分析自闭症儿童精细运动行为的触觉抓握器虚拟现实系统(Hg)的设计

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Fine motor skills, including grasping, manipulating, and reaching for objects, are a documented weakness for many children with Autism Spectrum Disorders (ASD). However, relatively less research has attempted to address these motor deficits, especially by taking advantage of advanced technology. To explore potential mechanisms for expanding accessibility to fine motor intervention for people with ASD, we present the design and implementation of a feasibility study of a novel Haptic-Gripper Virtual Reality System (Hg). Hg is capable of providing analysis and practice opportunities of fine motor skills in an adaptive and low-cost virtual environment with real-time auditory, visual, and haptic feedback. The Haptic Gripper in Hg can detect a user's grip force and hand location and provide haptic feedback to guide hand movement and grip control while completing several simple and engaging virtual fine motor tasks. We conducted a feasibility study with six children with ASD and six typically developing (TD) children and found that participants were interested in using the Haptic Gripper and could quickly get used to the system. Although the results are preliminary and limited, we observed medium to strong correlations between the proposed fine motor skill metrics and the scores achieved with a standardized fine motor skill test and improvements of participants in accuracy and steadiness of movement and force control. This study provides important guidance for future investigations of the Hg's potential for assessing and improving fine motor manipulation skills.
机译:良好的运动技能,包括对物体的抓握,操纵和伸伸,是许多自闭症谱系障碍(ASD)儿童的弱点。然而,相对较少的研究试图解决这些运动缺陷,特别是通过利用先进技术。为了探索潜在的机制来扩大自闭症患者对精细运动干预的可及性,我们提出了一种新型触觉-抓手虚拟现实系统(Hg)的可行性研究的设计和实施。在具有实时听觉,视觉和触觉反馈的自适应低成本虚拟环境中,Hg能够提供分析和练习精细运动技能的机会。以Hg表示的Haptic Gripper可以检测用户的握力和手的位置,并提供触觉反馈以指导手的运动和握力控制,同时完成一些简单且引人入胜的虚拟精细运动任务。我们对6名ASD儿童和6名典型发育(TD)儿童进行了可行性研究,发现参与者对使用Haptic Gripper感兴趣并且可以很快适应该系统。尽管结果是初步的且有限的,但我们观察到拟议的精细运动技能指标与通过标准化精细运动技能测试所获得的分数之间的中等到强相关性,以及参与者在运动和力量控制的准确性和稳定性方面的提高。这项研究为将来对汞评估和改善精细动作技巧的潜力的研究提供了重要的指导。

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