bioLogic: Natto Cells as Nanoactuators for Shape Changing Interfaces

bioLogic: Natto Cells as Nanoactuators for Shape Changing Interfaces
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DOI:
10.1145/2702123.2702611
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发表时间:
2015-04
期刊:
Proceedings of the 33rd Annual ACM Conference on Human Factors in Computing Systems
影响因子:
--
通讯作者:
Lining Yao;Jifei Ou;Chin-Yi Cheng;H. Steiner;Wen Wang;Guanyun Wang;H. Ishii
Lining Yao;Jifei Ou;Chin-Yi Cheng;H. Steiner;Wen Wang;Guanyun Wang;H. Ishii
中科院分区:
其他
文献类型:
--
作者:
Lining Yao;Jifei Ou;Chin-Yi Cheng;H. Steiner;Wen Wang;Guanyun Wang;H. Ishii

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大自然设计了自身的驱动器,以及高效的材料成分、几何形状和结构,以利用其驱动器并实现功能转变。基于细胞的湿致变形这一自然现象,我们引入纳豆芽孢杆菌活细胞作为一种对湿度敏感的纳米驱动器。在本文中,我们阐述了探索和比较适合人机交互(HCI)使用的细胞类型的过程、复合生物膜的开发、响应性结构的开发、驱动生物膜的控制装置,以及一个模拟和制造平台。最后,我们提供了多种有计算机控制和无计算机控制的应用设计,以展示我们的生物驱动器的潜力。通过本文,我们旨在使纳豆细胞及我们的平台技术能够被人机交互研究人员、设计师和生物黑客所使用。更广泛地说,我们试图鼓励对生物响应材料的研究和使用以及人机交互中的跨学科研究。
Nature has engineered its own actuators, as well as the efficient material composition, geometry and structure to utilize its actuators and achieve functional transformation. Based on the natural phenomenon of cells' hygromorphic transformation, we introduce the living Bacillus Subtilis natto cell as a humidity sensitive nanoactuator. In this paper, we unfold the process of exploring and comparing cell types that are proper for HCI use, the development of the composite biofilm, the development of the responsive structures, the control setup for actuating biofilms, and a simulation and fabrication platform. Finally, we provide a variety of application designs, with and without computer control to demonstrate the potential of our bio actuators. Through this paper, we intend to enable the use of natto cells and our platform technologies for HCI researchers, designers and bio-hackers. More generally, we try to encourage the research and use of biological responsive materials and interdisciplinary research in HCI.