ThermoFit:通过超材料结构实现智能矫形器的热成型以适配身体和调节组件
作者
"Smart orthoses hold great potential for intelligent rehabilitation monitoring and training. However, most of these electronic assistive devices are typically too difficult for daily use and challenging to modify to accommodate variations in body shape and medical needs. For existing clinicians, the customization pipeline of these smart devices imposes significant learning costs. This paper introduces ThermoFit, an end-to-end design and fabrication pipeline for thermoforming smart orthoses that adheres to the clinically accepted procedure. ThermoFit enables the shapes and electronics positions of smart orthoses to conform to bodies and allows rapid iteration by integrating low-cost Low-Temperature Thermoplastics (LTTPs) with custom metamaterial structures and electronic components. Specifically, three types of metamaterial structures are used in LTTPs to reduce the wrinkles caused by the thermoforming process and to permit component position adjustment and joint movement. A design tool prototype aids in generating metamaterial patterns and optimizing component placement and circuit routing. Three applications show that ThermoFit can be shaped on bodies to different wearables. Finally, a hands-on study with a clinician verifies the user-friendliness of thermoforming smart orthosis, and technical evaluations demonstrate fabrication efficiency and electronic continuity. https://doi.org/10.1145/3580806"
研究问题 / 现实痛点
这篇论文在当前问题库中对应的问题线索。
研究问题
3- 如何通过低温热塑性材料和超材料结构实现智能矫形器的贴合身体并调整组件位置?分类: 康复训练与物理治疗技术支持同类问题arrow_forward
- 哪些超材料结构能够提升智能矫形器的可拉伸性、弹性及内部区域可调性?分类: 康复训练与物理治疗技术支持同类问题arrow_forward
- 如何简化智能矫形器的设计和制造流程,以适应临床实践需求?分类: 康复训练与物理治疗技术支持同类问题arrow_forward
现实痛点
1- 医生和用户难以调整智能矫形器以匹配复杂身体结构及医疗需求的变化。分类: 康复训练与物理治疗技术支持同类问题arrow_forward
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