Unit of Measurement and Biomedical Instrumentations, Departmental Faculty of Engineering, Università Campus Bio-Medico di Roma, Via Alvaro del Portillo, 21, 00128 Rome, Italy.
Unit of Food Science and Nutrition, Department of Science and Technology for Humans and the Environment, Università Campus Bio-Medico di Roma, Via Alvaro del Portillo, 21, 00128 Rome, Italy.
Sensors (Basel). 2021 Sep 22;21(19):6327. doi: 10.3390/s21196327.
Plants are primary resources for oxygen and foods whose production is fundamental for our life. However, diseases and pests may interfere with plant growth and cause a significant reduction of both the quality and quantity of agriculture products. Increasing agricultural productivity is crucial for poverty reduction and food security improvements. For this reason, the 2030 Agenda for Sustainable Development gives a central role to agriculture by promoting a strong technological innovation for advancing sustainable practices at the plant level. To accomplish this aim, recently, wearable sensors and flexible electronics have been extended from humans to plants for measuring elongation, microclimate, and stressing factors that may affect the plant's healthy growth. Unexpectedly, fiber Bragg gratings (FBGs), which are very popular in health monitoring applications ranging from civil infrastructures to the human body, are still overlooked for the agriculture sector. In this work, for the first time, plant wearables based on FBG technology are proposed for the continuous and simultaneous monitoring of plant growth and environmental parameters (i.e., temperature and humidity) in real settings. The promising results demonstrated the feasibility of FBG-based sensors to work in real situations by holding the promise to advance continuous and accurate plant health growth monitoring techniques.
植物是氧气和食物的主要来源,其生产对我们的生活至关重要。然而,疾病和害虫可能会干扰植物的生长,导致农产品的质量和数量显著下降。提高农业生产力对于减贫和改善粮食安全至关重要。出于这个原因,可持续发展目标 2030 为农业赋予了核心地位,通过促进强大的技术创新,推动在植物层面推进可持续实践。为了实现这一目标,最近,可穿戴传感器和柔性电子技术已经从人类扩展到植物,用于测量伸长率、微气候和可能影响植物健康生长的压力因素。出人意料的是,光纤布拉格光栅(FBG)在从民用基础设施到人体的健康监测应用中非常受欢迎,但在农业领域仍未得到重视。在这项工作中,首次提出了基于 FBG 技术的植物可穿戴设备,用于在实际环境中连续和同时监测植物生长和环境参数(即温度和湿度)。有前景的结果表明,基于 FBG 的传感器在实际情况下工作的可行性,有望推动连续和准确的植物健康生长监测技术的发展。