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Design of a 3D-printed, open-source wrist-driven orthosis for individuals with spinal cord injury

机译:为脊髓损伤患者设计的3D打印,开放源代码的腕式矫形器

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摘要

Assistive technology, such as wrist-driven orthoses (WDOs), can be used by individuals with spinal cord injury to improve hand function. A lack of innovation and challenges in obtaining WDOs have limited their use. These orthoses can be heavy and uncomfortable for users and also time-consuming for orthotists to fabricate. The goal of this research was to design a WDO with user (N = 3) and orthotist (N = 6) feedback to improve the accessibility, customizability, and function of WDOs by harnessing advancements in 3D-printing. The 3D-printed WDO reduced hands-on assembly time to approximately 1.5 hours and the material costs to $15 compared to current fabrication methods. Varying improvements in users' hand function were observed during functional tests, such as the Jebsen Taylor Hand Function Test. For example, one participant's ability on the small object task improved by 29 seconds with the WDO, while another participant took 25 seconds longer to complete this task with the WDO. Two users had a significant increase in grasp strength with the WDO (13–122% increase), while the other participant was able to perform a pinching grasp for the first time. The WDO designs are available open-source to increase accessibility and encourage future innovation.
机译:腕关节矫形器(WDO)等辅助技术可用于脊髓损伤的患者,以改善手部功能。在获得WDO方面缺乏创新和挑战限制了它们的使用。这些矫形器对于使用者而言可能是沉重的且不舒适的,并且对于矫形器的制造来说也是费时的。这项研究的目的是设计一个具有用户(N = 3)和矫正专家(N = 6)反馈的WDO,以通过利用3D打印的进步来改善WDO的可访问性,可定制性和功能。与目前的制造方法相比,采用3D打印的WDO将动手组装时间减少到大约1.5小时,材料成本降低到15美元。在功能测试(例如捷成泰勒手功能测试)中观察到用户手功能的各种改进。例如,一个参与者使用WDO将小对象任务的能力提高了29秒,而另一名参与者花费了25秒以上的时间才能使用WDO完成此任务。两名使用者使用WDO的抓握力显着提高(提高13–122%),而另一名参与者首次能够进行捏握。 WDO设计是开源的,以增加可访问性并鼓励未来的创新。

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