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Microsensor Device for Minimally Invasive Measurement of Moisture Storage in Plants Shoots

机译:用于微创测量植物芽中的水分储存的微传感器装置

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To increase the productivity of crops and ensure their stable production, a growth method based on the physiological information of plants is necessary. Therefore, in recent years, methods for direct measurement of such information are in demand. In this study, we propose a novel microsensor device for quantitative and minimally invasive measurement of moisture storage in plant shoots. The moisture-storage sensor device comprises a moisture-content sensor for measuring moisture storage, as well as an electrical-conductivity sensor and a resistance temperature detector for compensation of the moisture-content value. We fabricated the device on needle-shaped minimally invasive Si probes by using a micro-electromechanical system. We demonstrated the feasibility of the minimally invasive manner of the device in measuring the moisture storage (measurement range of approximately 40%–100%) in plant shoots.
机译:为了提高作物的生产率并确保其稳定的生产,需要基于植物生理信息的生长方法。因此,近年来,用于直接测量此类信息的方法有所要求。在这项研究中,我们提出了一种新型微传感器装置,用于植物芽中的水分储存的定量和微创测量。湿度储存传感器装置包括用于测量水分储存的水分含量传感器,以及用于补偿水分含量值的电导率传感器和电阻温度检测器。我们通过使用微机电系统在针形微创SI探针上制造了该装置。我们证明了在植物芽中测量水分储存(约40%-100%的测量范围)的装置的最小侵入方式的可行性。

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