通过设计捷径创建3D打印辅助技术:利用数字制造服务将3D打印纳入物理治疗教室:利用数字制造服务将3D打印纳入物理治疗教室

E. Higgins, W. Easley, Karen L. Gordes, Amy Hurst, Foad Hamidi
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引用次数: 3

摘要

数字制造方法已被证明是生产定制辅助技术(AT)的有效方法。然而,利用这些工具所需的技能目前需要高水平的技术技能。先前的研究表明,在物理治疗培训中整合这些技能是适当的,但所需的技术难度水平可能是一个问题。为了解决这些问题,我们向一组PT学生介绍了创客的概念,并让他们在创客的帮助下为真正的最终用户开发定制的AT。在将制作融入PT课程时,我们提出了三个考虑因素:1)包括所有利益相关者,2)培养PT和创客的跨学科能力,3)利用学术培训计划将创客和PT学生联系起来。在本文中,我们通过将PT学生与提供数字制造服务和技术专长的社区组织联系起来,为他们提供如何促进3D打印定制at的知识。通过连接多个利益相关者(即PT学生,数字制造商和AT用户),我们提供了一种方法来克服PT学生的时间和能力限制,通过将他们与专业制造商联系起来,利用先进的制造技术来创建定制的AT。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Creating 3D Printed Assistive Technology Through Design Shortcuts: Leveraging Digital Fabrication Services to Incorporate 3D Printing into the Physical Therapy Classroom: Leveraging Digital Fabrication Services to Incorporate 3D Printing into the Physical Therapy Classroom
Digital fabrication methods have been shown to be an effective method for producing customized assistive technology (AT). However, the skills required to utilize these tools currently require a high level of technical skill. Previous research showed that integration of these skills within physical therapy training is appropriate but that the level of technical difficulty required can be an issue. We worked to address these issues by introducing a group of PT students to maker concepts and having them develop custom AT for real end users with the help of makers. We present three considerations when integrating making into PT curriculum: 1) including all stakeholders, 2) developing interdisciplinary competencies for PTs and makers, and 3) leveraging academic training programs to connect makers and PT students. In this paper, we contribute to knowledge on how to facilitate the 3D printing of customized ATs for PT students by connecting them with a community organization that provides digital fabrication services and technical expertise. By connecting multiple stakeholders (i.e., PT students, digital fabricators, and AT users), we offer an approach to overcome time and capacity constraints of PT students to utilize advanced fabrication technologies to create customized ATs through connecting them to professional makers.
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