Cook Albert M, Adams Kim, Encarnação Pedro, Alvarez Liliana
Faculty of Rehabilitation Medicine, University of Alberta, Alberta, Canada.
Dev Neurorehabil. 2012;15(2):136-48. doi: 10.3109/17518423.2011.635609. Epub 2012 Feb 1.
Motor experience plays a central role in cognitive development. Assistive technologies can thus provide augmentative manipulation for children with motor disabilities. This paper explores the use of robots to this end.
A revision of studies conducted with typically-developing children and children with disabilities regarding the use of robots is presented. This revision provides a description of the cognitive skills required and revealed by the child when using a robot. Opportunities for participation and exploration were identified and further research is discussed.
Robots provide insight into the cognitive skills of children with motor disabilities. Robots also provide means for independent exploration and participation in learning and play activities. Integration of augmentative manipulation and communication increases interest and participation of children with disabilities.
Children with disabilities can use augmentative manipulation systems to independently explore and interact with their environment. Children can use robots as tools providing them with opportunities to reveal and further develop their cognitive skills. Alternative access methods can increase access for children with severe motor disabilities.
运动体验在认知发展中起着核心作用。因此,辅助技术可为运动障碍儿童提供增强型操作。本文探讨为此目的使用机器人的情况。
介绍了对正常发育儿童和残疾儿童使用机器人的研究进行的综述。该综述描述了儿童使用机器人时所需和展现出的认知技能。确定了参与和探索的机会,并讨论了进一步的研究。
机器人有助于了解运动障碍儿童的认知技能。机器人还为独立探索以及参与学习和游戏活动提供了途径。增强型操作与交流的整合提高了残疾儿童的兴趣和参与度。
残疾儿童可以使用增强型操作系统独立探索并与周围环境互动。儿童可以将机器人用作工具,为他们提供展现和进一步发展认知技能的机会。替代接入方法可以增加重度运动障碍儿童的接入机会。