交互式针迹取样器

Gayithri Jayathirtha, Y. Kafai
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引用次数: 11

摘要

电子纺织品通过重新设计的微控制器、传感器和执行器接口,将计算与织物结合在一起,不仅扩大了工程、时尚和人机交互的可能性,而且扩大了计算机科学教育本身的可能性。虽然涉及电子纺织品的个别研究已经显示出多样化参与,提高兴趣和深化计算机学习的希望,特别是对女学生来说,我们认识到需要综合研究结果,以了解电子纺织品对计算机教育的总体贡献。在本文中,我们报告了64项教育电子纺织品研究的综合研究结果,以回答以下问题:(1)电子纺织品是否扩大了获取和参与?(2)电子纺织品如何支持学习者的兴趣和持续参与?(3)学生们从电子纺织项目中学到了什么?我们的综合研究表明,尽管电子纺织品成功地拓宽了获取途径,支持了学习者的兴趣,并向新手学习者介绍了基本的计算概念,但围绕公平参与和更深层次的学科参与的问题仍然存在。我们讨论了未来设计和研究的方向,以探索电子纺织品在计算机科学教育中的全部潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interactive Stitch Sampler
Electronic textiles, which integrate computation with fabrics through a redesigned interface of microcontrollers, sensors, and actuators, have expanded possibilities not only for engineering, fashion, and human-computer interaction but also for computer science education itself. While individual studies involving electronic textiles have shown promise to diversify participation, raise interest, and deepen learning in computing, especially for female students, we recognized a need to synthesize findings across studies to understand the overall contribution of electronic textiles to computing education. In this article, we report our findings from a meta-synthesis of 64 educational electronic textiles studies to answer the following questions in computing: (1) Did electronic textiles broaden access and participation? (2) How did electronic textiles support learners’ interests and sustain participation? (3) What and how did students learn from electronic textile projects? Our meta-synthesis revealed that although electronic textiles successfully broadened access, supported learners’ interests, and introduced basic computational concepts to novice learners, questions around equitable participation and deeper disciplinary engagement persist. We discuss directions for future design and research efforts to explore the full potential of e-textiles in computer science education.
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