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A plant based sensing method for nutrition stress monitoring

机译:一种基于植物的营养压力监测传感方法

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Due to economical and ecological reasons it is important to provide the necessary flexibility in fertilizer management to respond to differences in plant nutrients requirements. Plant-based sensors have potential to provide more accurate and on-line information regarding crop bio-responses to environmental stress and could overcome limitations of traditional methods which focus only on monitoring parameters of soil. Current research regarding on-line plant stress sensing techniques concentrates on spectroscopic and image processing methods. These techniques have many limitations connected with their sensitivity to environmental interferences. In recent years, impedance spectroscopy has become a well-known non-invasive tool for describing the electrical properties of many systems. The research hypothesis tested was that information provided by Electrical Impedance Spectroscopy is correlated with tomato plant stress caused by lack of mineral nutrients in the growth medium. The experiment was conducted with two sets of hydroponically-grown tomato plants (Lycopersicon esculentum Mill., cv. 'Maliniak'). During the experiment the tomato plants were fed alternately with flow of necessary nutrients and with distilled water. The impedance spectra were measured by scanning frequencies from 100 Hz to 50 kHz to determine the most sensitive frequency. A Nutrition Index was proposed for indicating variability of mineral nutrition within plants, and its correlation with experimental plant data was tested. Data showed that the relation between the Nutrition Index and the stress caused by lack of mineral nutrients in the growing medium was a monotonic function in the case of study. The results presented in the paper support the concept that the electrical impedance spectroscopy is a non-destructive, economical and reliable measurement method, which can be utilised for plant nutrition stress monitoring.
机译:由于经济和生态原因,在肥料管理中提供必要的灵活性以应对植物养分需求的差异非常重要。基于植物的传感器有潜力提供有关农作物对环境压力的生物反应的更准确和在线的信息,并且可以克服仅专注于监测土壤参数的传统方法的局限性。当前关于在线植物胁迫感测技术的研究集中于光谱学和图像处理方法。这些技术由于对环境干扰的敏感性而具有许多局限性。近年来,阻抗谱已成为描述许多系统电特性的众所周知的非侵入性工具。测试的研究假设是,电阻抗谱提供的信息与生长培养基中缺乏矿物质营养素引起的番茄植株胁迫相关。该实验是用两套水培番茄植物(Lycopersicon esculentum Mill。,cv。'Maliniak')进行的。在实验过程中,向番茄植株交替注入必需的营养液和蒸馏水。通过扫描100 Hz至50 kHz的频率以确定最敏感的频率来测量阻抗谱。提出了营养指数来指示植物内矿质营养的变异性,并测试了其与植物实验数据的相关性。数据显示,在研究中,营养指数与生长培养基中缺乏矿质营养素引起的压力之间的关系是单调函数。本文提出的结果支持了这样的概念,即电阻抗光谱法是一种无损,经济且可靠的测量方法,可用于植物营养胁迫监测。

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