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首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Design of a novel mobility device controlled by the feet motion of a standing child: a feasibility study.
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Design of a novel mobility device controlled by the feet motion of a standing child: a feasibility study.

机译:由站立儿童的脚部运动控制的新型移动设备的设计:可行性研究。

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摘要

Self-generated mobility is a major contributor to the physical, emotional, cognitive, and social development of infants and toddlers. When young children have disorders that hinder self locomotion, their development is at risk for delay. Independent mobility via traditional power mobility devices may prevent this delay, but do little to encourage the child's development of gross motor skills. This research aims to develop a bio-driven mobile-assistive device that is controlled and driven by moving the feet, which may encourage the development of gross motor skills. In this study, system feasibility is shown by experiments on five typically developing toddlers and one special needs toddler with spastic cerebral palsy. Children were placed in the bio-driven device and instructed to navigate through a maze. All subjects were able to successfully complete the maze in multiple trials. In addition, two toddlers showed evidence of improved driving skill by completing the maze in shorter times in successive trials on a given testing day. The results suggest that such a device is feasible for purposeful driving. Recommendations are given for the device and protocol redesign for related future testing.
机译:自我产生的移动性是婴幼儿身体,情感,认知和社会发展的主要因素。当幼儿患有阻碍自我运动的障碍时,他们的发育就有延迟的风险。通过传统电动出行设备进行的独立出行可以防止这种延迟,但对鼓励儿童发展总体运动技能却无济于事。这项研究旨在开发一种生物驱动的移动辅助设备,该设备可通过移动脚来控制和驱动,这可能会促进总体运动技能的发展。在这项研究中,通过对五名典型发育中的幼儿和一名特殊需求的患有痉挛性脑瘫的幼儿进行的实验表明了系统的可行性。儿童被放置在生物驱动的设备中,并被指示在迷宫中导航。所有受试者都能够在多个试验中成功完成迷宫。此外,两个幼儿通过在给定测试日的连续试验中以更短的时间完成迷宫显示出提高了驾驶技能的证据。结果表明,这种装置对于有目的的驾驶是可行的。提出了有关设备和协议重新设计的建议,以供将来进行相关测试。

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