论文标题
反应性真菌可穿戴
Reactive fungal wearable
论文作者
论文摘要
智能可穿戴设备的感知和过程信息来自用户的身体和环境,并将其分析结果报告为电信号。常规的电子传感器和控制器通常是由软电子产品的最新进展增加的。有机电子和生物电子学,尤其是在生活基质的情况下,为将天然系统的平行感测和信息处理能力纳入未来和新兴的可穿戴设备提供了一个绝佳的机会。如今,真菌正在成为有前途的候选人生产可持续的纺织品,以用作环保的生物培训。为了评估真菌可穿戴设备的感应潜力,我们对通过牡蛎真菌〜\ emph {pleurotus ostreatus}定植的大麻织物的电反应进行了实验实验,以对吸引剂和驱虫剂进行机械拉伸和刺激。我们已经表明,有可能辨别刺激的本质与真菌电反应。结果为未来设计智能传感斑块的设计铺平了一种方法,该斑块用于反应性真菌可穿戴设备。
Smart wearables sense and process information from the user's body and environment and report results of their analysis as electrical signals. Conventional electronic sensors and controllers are commonly, sometimes augmented by recent advances in soft electronics. Organic electronics and bioelectronics, especially with living substrates, offer a great opportunity to incorporate parallel sensing and information processing capabilities of natural systems into future and emerging wearables. Nowadays fungi are emerging as a promising candidate to produce sustainable textiles to be used as ecofriendly biowearables. To assess the sensing potential of fungal wearables we undertook laboratory experiments on electrical response of a hemp fabric colonised by oyster fungi~\emph{Pleurotus ostreatus} to mechanical stretching and stimulation with attractants and repellents. We have shown that it is possible to discern a nature of stimuli from the fungi electrical responses. The results paved a way towards future design of intelligent sensing patches to be used in reactive fungal wearables.