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Using a robotic teleoperation system for haptic exploration

机译:利用机器人遥通系统进行触觉勘探

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Introduction: When children with physical impairments cannot perform hand movements for haptic exploration, they miss opportunities to learn about object properties. Robotics systems with haptic feedback may better enable object exploration. Methods: Twenty-four adults and ten children without physical impairments, and one adult with physical impairments, explored tools to mix substances or transport different sized objects. All participants completed the tasks with both a robotic system and manual exploration. Exploratory procedures used to determine object properties were also observed. Results: Adults and children accurately identified appropriate tools for each task using manual exploration, but they were less accurate using the robotic system. The adult with physical impairment identified appropriate tools for transport in both conditions, however had difficulty identifying tools used for mixing substances. A new exploratory procedure was observed, Tapping, when using the robotic system. Conclusions: Adults and children could make judgements on tool utility for tasks using both manual exploration and the robotic system, however they experienced limitations in the robotics system that require more study. The adult with disabilities required less assistance to explore tools when using the robotic system. The robotic system may be a feasible way for individuals with physical disabilities to perform haptic exploration.
机译:介绍:当具有物理障碍的儿童无法对触觉勘探进行手动运动,他们错过了了解对象属性的机会。具有触觉反馈的机器人系统可以更好地实现对象探索。方法:二十四名成人和十个没有身体损伤的儿童,以及一个具有物理障碍的成年人,探索了混合物质或运输不同大小的物体的工具。所有参与者都完成了机器人系统和手动探索的任务。还观察到用于确定对象属性的探索程序。结果:成人和儿童使用手动探索准确地确定了每个任务的适当工具,但它们使用机器人系统的准确性较低。具有物理障碍的成年人确定了两种条件的适当工具,然而难以识别用于混合物质的工具。观察到新的探索程序,使用机器人系统进行攻丝。结论:成人和儿童可以使用手动探索和机器人系统对工具实用程序进行判断,但是它们在需要更多研究的机器人系统中经历了局限性。具有残疾人的成年人需要较少的帮助,以探索使用机器人系统的工具。机器人系统可能是具有身体残疾的个人来执行触觉探索的可行方式。

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