首页> 外文会议>Proceedings of the IEEE/RAS-EMBS International Conference on Rehabilitation Robotics >Combined active wrist and hand orthosis for home use: Lessons learned
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Combined active wrist and hand orthosis for home use: Lessons learned

机译:腕关节和手部矫形器结合使用,家庭使用的经验教训

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In this paper, we present our design of an active hand and wrist orthosis, SCRIPT Active Orthosis Iteration 3 (SAO-i3), for rehabilitation after stroke at home. Impairments in the hand decrease the quality of life of stroke patients drastically by limiting activities of daily living such as eating, drinking, buttoning, etc. Since there is a high correlation between therapy intensity and functional recovery, it is logical to bring robot-assisted therapy to patients' homes in order to let them customize their own therapy schedules in a more time-effective, affordable and motivational way. In the EUFP7 SCRIPT project, we developed a passive hand and wrist orthosis and tested it with 24 patients from three countries (NL, IT, UK) at their homes for six weeks. Based on the lessons we learned, we developed an active hand and wrist orthosis for home use to enable better control over the assist-as-needed characteristics of the orthosis, which is beneficial to adjust the assistance according to patients' recovery progress. The results are mixed. Passive assistive forces, combined with compliant independent interaction with fingers and wrist, create a solid gaming interface for motivated rehabilitation at home, which was one of the primary goals of the project. However, complex mechanics and mechatronics provide theoretical benefits but result in significant practical limitations. Perhaps, having a compliant active wrist and finger orthosis that is useable independently at home, is a step too far.
机译:在本文中,我们介绍了一种主动手腕矫形器的设计,SCRIPT主动矫形器迭代3(SAO-i3),用于在家中风后的康复。通过限制日常活动(例如进食,喝水,按纽扣等),手部的损伤会极大地降低中风患者的生活质量。由于治疗强度与功能恢复之间存在高度相关性,因此采用机器人辅助是合乎逻辑的对患者家中进行治疗,以使他们能够以更省时,更实惠和更具激励性的方式自定义治疗计划。在EUFP7 SCRIPT项目中,我们开发了一种被动型手腕矫形器,并与来自三个国家(NL,IT,英国)的24名患者在家中进行了为期六周的测试。根据吸取的经验教训,我们开发了一种家用主动手腕矫形器,可以更好地控制矫形器的按需辅助特性,这有利于根据患者的康复进度来调整辅助功能。结果好坏参半。被动的辅助力量,再加上与手指和手腕的顺应性独立互动,为在家中的主动康复创造了坚实的游戏界面,这是该项目的主要目标之一。但是,复杂的机械和机电一体化具有理论上的优势,但会带来很大的实际限制。也许有一个可以在家中独立使用的顺应性活动手腕和手指矫形器,已经迈出了一大步。

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