Li Mixuan, Aflatoony Leila
School of Industrial Design, Georgia Institute of Technology, Atlanta, GA, USA.
Disabil Rehabil Assist Technol. 2025 Mar 28:1-9. doi: 10.1080/17483107.2025.2483953.
This study evaluates a parametric design tool created to support occupational therapists (OTs) in designing personalized assistive technologies (ATs). The tool enables users to modify existing three-dimensional (3D) handgrip models by integrating individual hand measurements and anthropometric data.
We utilized an iterative prototyping approach to develop a parametric interface for the customized design of ATs and conducted user studies involving 12 OTs to assess the practical application of the tool and gather feedback on 3D-printed ATs. We investigated the properties and parameters of 3D printing, including the temperature, layer height, infill percentage, and material selection, to enhance the safety, durability, and hygiene of 3D-printed assistive devices.
The parametric design tool received positive feedback from OTs for its ease of use, customization options, and real-time design capabilities, which they found beneficial for their professional practice. The integration of this tool with 3D printing technology has also been praised for its cost-effectiveness and efficiency, offering a unique solution for customized assistive devices that address current market limitations.
This study introduces an innovative design tool that enhances adaptability and specialized design in AT development by integrating digital fabrication into OT practice to create personalized devices tailored to individual needs. Our study highlights the importance of precise 3D printing parameter optimization to ensure that assistive devices are both functional and reliable. Ultimately, this study aimed to enhance activity performance, such as eating, for individuals with hand impairments, thereby supporting their continued independence in daily activities.
本研究评估一种参数化设计工具,该工具旨在支持职业治疗师(OT)设计个性化辅助技术(AT)。该工具通过整合个人手部测量数据和人体测量数据,使用户能够修改现有的三维(3D)手柄模型。
我们采用迭代原型设计方法来开发用于定制AT设计的参数化界面,并开展了涉及12名OT的用户研究,以评估该工具的实际应用情况,并收集有关3D打印AT的反馈。我们研究了3D打印的特性和参数,包括温度、层高、填充率和材料选择,以提高3D打印辅助设备的安全性、耐用性和卫生性。
参数化设计工具因其易用性、定制选项和实时设计功能而获得OT的积极反馈,他们认为这些功能对其专业实践有益。该工具与3D打印技术的整合也因其成本效益和效率而受到赞誉,为定制辅助设备提供了独特的解决方案,解决了当前市场的局限性。
本研究引入了一种创新设计工具,通过将数字制造融入OT实践,以创建满足个人需求的个性化设备,从而提高AT开发中的适应性和专业化设计。我们的研究强调了精确优化3D打印参数的重要性,以确保辅助设备既实用又可靠。最终,本研究旨在提高手部有损伤的个体的活动表现,如进食能力,从而支持他们在日常活动中持续保持独立。