Department of Biomedical Engineering, Georgia Institute of Technology, Atlanta, GA, United States of America.
PLoS One. 2019 Mar 15;14(3):e0212904. doi: 10.1371/journal.pone.0212904. eCollection 2019.
By controlling robots comparable to the human body, people with profound motor deficits could potentially perform a variety of physical tasks for themselves, improving their quality of life. The extent to which this is achievable has been unclear due to the lack of suitable interfaces by which to control robotic body surrogates and a dearth of studies involving substantial numbers of people with profound motor deficits. We developed a novel, web-based augmented reality interface that enables people with profound motor deficits to remotely control a PR2 mobile manipulator from Willow Garage, which is a human-scale, wheeled robot with two arms. We then conducted two studies to investigate the use of robotic body surrogates. In the first study, 15 novice users with profound motor deficits from across the United States controlled a PR2 in Atlanta, GA to perform a modified Action Research Arm Test (ARAT) and a simulated self-care task. Participants achieved clinically meaningful improvements on the ARAT and 12 of 15 participants (80%) successfully completed the simulated self-care task. Participants agreed that the robotic system was easy to use, was useful, and would provide a meaningful improvement in their lives. In the second study, one expert user with profound motor deficits had free use of a PR2 in his home for seven days. He performed a variety of self-care and household tasks, and also used the robot in novel ways. Taking both studies together, our results suggest that people with profound motor deficits can improve their quality of life using robotic body surrogates, and that they can gain benefit with only low-level robot autonomy and without invasive interfaces. However, methods to reduce the rate of errors and increase operational speed merit further investigation.
通过控制与人体相当的机器人,严重运动障碍的人可以为自己执行各种身体任务,从而提高生活质量。由于缺乏合适的控制机器人替身的接口以及缺乏涉及大量严重运动障碍者的研究,因此尚不清楚这在多大程度上是可行的。我们开发了一种新颖的基于网络的增强现实接口,使严重运动障碍的人能够远程控制 Willow Garage 的 PR2 移动机器人,这是一种具有两个臂的人类规模的轮式机器人。然后,我们进行了两项研究来调查机器人替身的使用。在第一项研究中,来自美国各地的 15 名严重运动障碍的新手用户在佐治亚州亚特兰大控制 PR2 执行修改后的动作研究臂测试(ARAT)和模拟的自理任务。参与者在 ARAT 上取得了有临床意义的改善,并且 15 名参与者中的 12 名(80%)成功完成了模拟的自理任务。参与者一致认为机器人系统易于使用,有用,并将在他们的生活中提供有意义的改善。在第二项研究中,一名严重运动障碍的专家用户在其家中自由使用 PR2 七天。他执行了各种自理和家务任务,并且还以新颖的方式使用了机器人。将两项研究结合起来,我们的结果表明,严重运动障碍的人可以使用机器人替身来提高生活质量,并且他们仅在低水平的机器人自主性和无需侵入性接口的情况下就可以受益。但是,减少错误率和提高操作速度的方法值得进一步研究。