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首页> 外文期刊>IEEE Engineering in Medicine and Biology Magazine >Ideas to help break down barriers: the RESNA Student Scientific Paper/Paralyzed Veterans of America Student Design Competition winners
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Ideas to help break down barriers: the RESNA Student Scientific Paper/Paralyzed Veterans of America Student Design Competition winners

机译:打破障碍的想法:RESNA学生科学论文/美国瘫痪退伍军人学生设计大赛获奖者

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摘要

Each year, RESNA hosts two competitions at its annual conference. The RESNA Student Scientific Paper Competition promotes high-quality research related to the fields of rehabilitation engineering and assistive technology. The Paralyzed Veterans of America Student Design Competition recognizes exemplary projects developed by students from all disciplines related to assistive technology. Both competitions are intended to encourage students from a variety of disciplines to address issues in the field of assistive technology and submit papers for presentation at the annual RESNA conference. This article presents summaries of the 1999 competition winning entries which covered the following topics: relating wheelchair setup to propulsion biomechanics; gender differences in the kinematic features of manual wheelchair propulsion; comparison of side-to-side wheelchair propulsion forces using an ARMA modeling technique; feasibility of EEG control for a hand grasp neuroprosthesis; clinical use of in situ pressure sensors for prosthetic socket fit; bowling ramp modification to increase autonomy and normalization; passive robot for frail visually impaired people; a telephone device to improve communication; voice operated wheelchair; wheelchair-based mounting system for automated positioning of electronic augmentative communication device.
机译:RESNA每年在其年度会议上举办两次比赛。 RESNA学生科学论文竞赛促进与康复工程和辅助技术领域相关的高质量研究。美国瘫痪退伍军人学生设计比赛认可了与辅助技术有关的所有学科的学生所开发的示范项目。两项竞赛均旨在鼓励来自各个学科的学生解决辅助技术领域的问题,并提交论文供RESNA年度会议介绍。本文介绍了1999年竞赛获奖作品的摘要,涉及以下主题:将轮椅的安装与推进生物力学相关;手动轮椅推进运动特征中的性别差异;使用ARMA建模技术比较轮椅左右推动力;脑电控制手抓神经假体的可行性;原位压力传感器在临床上的应用,用于假体承窝;修改保龄球坡道以增加自主性和标准化;适用于脆弱的视力障碍者的被动机器人;用于改善通信的电话设备;声控轮椅基于轮椅的安装系统,用于自动定位电子增强通信设备。

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