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Non-invasive absolute measurement of leaf water content using terahertz quantum cascade lasers

机译:使用太赫兹量子级联激光无创绝对测量叶片含水量

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摘要

Background: Plant water resource management is one of the main future challenges to fight recent climatic changes. The knowledge of the plant water content could be indispensable for water saving strategies. Terahertz spectroscopic techniques are particularly promising as a non-invasive tool for measuring leaf water content, thanks to the high predominance of the water contribution to the total leaf absorption. Terahertz quantum cascade lasers (THz QCL) are one of the most successful sources of THz radiation. Results: Here we present a new method which improves the precision of THz techniques by combining a transmission measurement performed using a THz QCL source, with simple pictures of leaves taken by an optical camera. As a proof of principle, we performed transmission measurements on six plants of Vitis vinifera L. (cv "Colorino"). We found a linear law which relates the leaf water mass to the product between the leaf optical depth in the THz and the projected area. Results are in optimal agreement with the proposed law, which reproduces the experimental data with 95% accuracy. Conclusions: This method may overcome the issues related to intra-variety heterogeneities and retrieve the leaf water mass in a fast, simple, and non-invasive way. In the future this technique could highlight different behaviours in preserving the water status during drought stress.
机译:背景:植物水资源管理是应对近期气候变化的主要未来挑战之一。植物节水的知识对于节水策略可能是必不可少的。太赫兹光谱技术作为一种用于测量叶片水分的非侵入性工具特别有前途,这要归功于水分对叶片总吸收的贡献很高。太赫兹量子级联激光器(THz QCL)是THz辐射最成功的来源之一。结果:在这里,我们提出了一种新方法,该方法通过将使用THz QCL源进行的透射测量与光学相机拍摄的简单叶子相结合,可以提高THz技术的精度。作为原理上的证明,我们对葡萄(Vitis vinifera L.)(cv“ Colorino”)的六株植物进行了透射测量。我们发现了一个线性定律,它将叶片水量与太赫兹叶片光学深度与投影面积之间的乘积相关联。结果与拟议的法律最相符,该法律以95%的精度重现了实验数据。结论:该方法可以克服与品种内异质性有关的问题,并以快速,简单且无创的方式获取叶片水量。将来,该技术可能会突出显示干旱胁迫期间保持水状态的不同行为。

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