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In this study, a sensor device based on MEMS technology is proposed to quantitatively monitor the health conditions of plants using biological information (i.e., pH and electrical conductivity (EC)). The proposed sensor device comprises an ion-sensitive field-effect transistor (ISFET)-based sensor (for pH measurement), an EC sensor, and a p-n diode temperature sensor (for adjusting the temperature...
This paper describes a highly pure phloem-sap-extraction sensor device that mounts a phloem position-identification sensor. Convenient methods of artificially extracting highly pure phloem sap for quantitative analysis of plant nutrition have yet to be established. To realize direct analysis of nutrition as well as long-term monitoring of its component fluctuation, we propose a novel sensor device...
In this study, a microscale phloem sap extraction sensor device based on MEMS technology is proposed to artificially extract phloem sap and monitor biological information in plant branches. The device consists of electrical resistance sensors to distinguish the positions of vascular bundles (xylem/phloem) and hollow-structured cantilevers with reservoirs for fluid extraction. A prototype of the proposed...
In this paper, we propose a method of estimating amount of attitude change of stationary sensor node which is important to realize observation of identical spot for a long term based on the tracked position data of underwater landmark generated on underwater image, and then in order to see a target, in here a coral, in the fixed position on image, attitude of captured image is corrected based on the...
In recent years, it says that the number of the coral decreases by the change in the marine ecosystem, the change of marine environment and increase of crown-of-thorns starfish. Therefore, the research and preservation of coral is necessary urgently. Then, authors have been developing the device which is called the stationary sensor node to observe underwater environment with wide range for a long...
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