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Evaluating Bacterial Nanocellulose Interfaces for Recording Surface Biopotentials from Plants.

Sensors (Basel, Switzerland) · 6 Apr 2024 · 10.3390/s24072335

Abstract

The study of plant electrophysiology offers promising techniques to track plant health and stress in vivo for both agricultural and environmental monitoring applications. Use of superficial electrodes on the plant body to record surface potentials may provide new phenotyping insights. Bacterial nanocellulose (BNC) is a flexible, optically translucent, and water-vapor-permeable material with low manufacturing costs, making it an ideal substrate for non-invasive and non-destructive plant electrodes. This work presents BNC electrodes with screen-printed carbon (graphite) ink-based conductive traces and pads. It investigates the potential of these electrodes for plant surface electrophysiology measurements in comparison to commercially available standard wet gel and needle electrodes. The electrochemically active surface area and impedance of the BNC electrodes varied based on the annealing temperature and time over the ranges of 50 °C to 90 °C and 5 to 60 min, respectively. The water vapor transfer rate and optical transmittance of the BNC substrate were measured to estimate the level of occlusion caused by these surface electrodes on the plant tissue. The total reduction in chlorophyll content under the electrodes was measured after the electrodes were placed on maize leaves for up to 300 h, showing that the BNC caused only a 16% reduction. Maize leaf transpiration was reduced by only 20% under the BNC electrodes after 72 h compared to a 60% reduction under wet gel electrodes in 48 h. On three different model plants, BNC-carbon ink surface electrodes and standard invasive needle electrodes were shown to have a comparable signal quality, with a correlation coefficient of >0.9, when measuring surface biopotentials induced by acute environmental stressors. These are strong indications of the superior performance of the BNC substrate with screen-printed graphite ink as an electrode material for plant surface biopotential recordings.

Plant phenotyping relevance

植物表面バイオポテンシャルを記録する電極インターフェースを開発し、既存電極との信号品質比較や植物への影響を検証しており、表現型取得手法が中心である。

abstractThis work presents BNC electrodes with screen-printed carbon (graphite) ink-based conductive traces and pads.
abstractIt investigates the potential of these electrodes for plant surface electrophysiology measurements in comparison to commercially available standard wet gel and needle electrodes.
abstractOn three different model plants, BNC-carbon ink surface electrodes and standard invasive needle electrodes were shown to have a comparable signal quality, with a correlation coefficient of >0.9

Code and data availability

The paper reports plant electrophysiology/phenotyping measurements (chlorophyll, transpiration, biopotential recordings) but provides no public dataset, code, or model deposit. The Data Availability Statement explicitly restricts data to on-request access from the authors. The cited Phytotron procedural manual is a pre

No evidence-backed public reproduction asset is currently recorded.

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