Nondestructive and Real-time Measurement of Moisture in Plant

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Abstract

We constructed a THz transillumination system for water content monitoring, and we succeeded in measuring the moisture level in plants. Our measurement system uses a widely tunable coherent THz parametric oscillator source. As target we chose for this experiment a leaf of Japanese basil. The time variation of the water content in the leaf was monitored in two situations: a leaf freshly cut which is left to dry out, and the leaf of a water stressed plant. We found by real-time measurements that the water content of a cut leaf does not decrease uniformly in time. Also, the response to water stress is delayed by about 5-10 minutes. Furthermore, we demonstrated a moisture measurement using a transillumination THz imaging system. As target we chose for this experiment a leaf of Hedera helix held between two thin plastic sheets. The change of the moisture distribution is clearly visible. These results show that the method described here can be applied to nondestructive and real-time monitoring of water content in plants. © 2004, The Institute of Electrical Engineers of Japan. All rights reserved.

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Ogawa, Y., Kawase, K., Mizuno, M., Yamashita, M., & Otani, C. (2004). Nondestructive and Real-time Measurement of Moisture in Plant. IEEJ Transactions on Electronics, Information and Systems, 124(9), 1672–1677. https://doi.org/10.1541/ieejeiss.124.1672

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