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Novel Wireless-Communicating Textiles Made from Multi-Material and Minimally-Invasive Fibers

机译:由多材料和微创纤维制成的新型无线通信纺织品

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摘要

The ability to integrate multiple materials into miniaturized fiber structures enables the realization of novel biomedical textile devices with higher-level functionalities and minimally-invasive attributes. In this work, we present novel textile fabrics integrating unobtrusive multi-material fibers that communicate through 2.4 GHz wireless networks with excellent signal quality. The conductor elements of the textiles are embedded within the fibers themselves, providing electrical and chemical shielding against the environment, while preserving the mechanical and cosmetic properties of the garments. These multi-material fibers combine insulating and conducting materials into a well-defined geometry, and represent a cost-effective and minimally-invasive approach to sensor fabrics and bio-sensing textiles connected in real time to mobile communications infrastructures, suitable for a variety of health and life science applications.
机译:将多种材料整合到小型化纤维结构中的能力使得能够实现具有更高功能性和微创特性的新型生物医学纺织设备。在这项工作中,我们提出了新颖的织物,它们融合了无干扰的多材料纤维,这些纤维通过2.4 GHz无线网络以出色的信号质量进行通信。纺织品的导体元素嵌入纤维本身内,在保持服装的机械和装饰特性的同时,提供了对环境的电和化学屏蔽。这些多材料纤维将绝缘和导电材料组合成一个定义明确的几何形状,并代表了一种经济有效且微创的方法,用于实时连接到移动通信基础设施的传感器织物和生物传感纺织品,适用于各种健康和生命科学应用。

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