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In vivo Observation of Tree Drought Response with Low-Field NMR and Neutron Imaging

机译:低场NMR和中子成像对树木干旱反应的体内观察

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摘要

Using a simple low-field NMR system, we monitored water content in a living tree in a greenhouse over 2 months. By continuously running the system, we observed changes in tree water content on a scale of half an hour. The data showed a diurnal change in water content consistent both with previous NMR and biological observations. Neutron imaging experiments show that our NMR signal is primarily due to water being rapidly transported through the plant, and not to other sources of hydrogen, such as water in cytoplasm, or water in cell walls. After accounting for the role of temperature in the observed NMR signal, we demonstrate a change in the diurnal signal behavior due to simulated drought conditions for the tree. These results illustrate the utility of our system to perform noninvasive measurements of tree water content outside of a temperature controlled environment.
机译:使用简单的低场NMR系统,我们监测了2个月内温室中活树的水​​分。通过连续运行该系统,我们在半小时内观察到树木含水量的变化。数据显示水含量的日变化与先前的NMR和生物学观察一致。中子成像实验表明,我们的NMR信号主要是由于水被迅速输送通过植物,而不是被输送至其他氢源,例如细胞质中的水或细胞壁中的水。考虑到温度在观测到的NMR信号中的作用后,我们证明了由于模拟的干旱条件导致树木日间信号行为的变化。这些结果说明了我们系统在温度受控环境之外对树木含水量进行无创测量的实用性。

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