首页> 外文会议>2012 4th IEEE RAS amp; EMBS International Conference on Biomedical Robotics and Biomechatronics >Feasibility study of robot enhanced mobility in children with cerebral palsy
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Feasibility study of robot enhanced mobility in children with cerebral palsy

机译:机器人增强脑瘫患儿行动能力的可行性研究

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Mobility is a causal factor in infant development. Neural impaired Infants, e.g., born with cerebral palsy (CP), have motor disability and are at risk for further developmental delays due to lack of self-generated mobility. It is possible that these impaired infants may benefit from robot enhanced mobility where they learn to drive a robot via a joystick, i.e., the mobility comes from the robot but the infants control the motion via a joystick. It is our hypothesis that such an enriched mobility experience will minimize delays in attaining other social and developmental childhood milestones. However, presently, there are no reported studies if children with CP would learn to drive a robot using a joystick and if they will sustain interest in doing so over multiple days of training. Also, it remains to be seen if such a robot enhanced mobility will impact development scores in this group of children. In this feasibility study, we use a special purpose robotic chair driven by a joystick to encourage infants and toddlers to drive. The study involved 20 children with CP in progressively difficult driving tasks over 10 sessions of training 20 minutes each. We found that after multiple training sessions, all children advanced in their driving skills and benefited in GMFM-88 functional scores.
机译:流动性是婴儿发育的原因。神经受损的婴儿,例如天生患有脑瘫(CP)的婴儿,患有运动障碍,由于缺乏自我产生的活动能力而面临进一步发育迟缓的风险。这些受损的婴儿可能会从机器人增强的机动性中受益,在那里他们学会了通过操纵杆来驱动机器人,即,机动性来自机器人,而婴儿则通过操纵杆来控制运动。我们的假设是,这种丰富的出行体验将最大程度地减少在实现其他社会和发展童年里程碑方面的延误。但是,目前尚无有关CP儿童是否学会使用操纵杆驾驶机器人以及他们是否会在多天的训练中持续保持兴趣的报道。同样,这种机器人增强的机动性是否会影响这一组儿童的发展成绩还有待观察。在此可行性研究中,我们使用由操纵杆驱动的专用机器人椅子来鼓励婴幼儿驾驶。该研究让20名患有CP的儿童逐渐困难地驾驶,每次训练20分钟,共进行10次训练。我们发现,经过多次培训,所有孩子的驾驶技能都得到了提高,并从GMFM-88功能评分中受益。

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