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An In Situ Electrical Impedance Tomography Sensor System for Biomass Estimation of Tap Roots.

Plants (Basel, Switzerland) · 28 Jun 2022 · 10.3390/plants11131713

Abstract

Root biomass is one of the most relevant root parameters for studies of plant response to environmental change. In this work, a dynamic and adjustable electrode array sensor system is designed for developing a cost-effective, high-speed data acquisition system based on electrical impedance tomography (EIT). The developed EIT system is found to be suitable for in situ measurements and capable of monitoring the changes in root growth and development with three-dimensional imaging by measuring impedances in multiple frequencies with the help of an EIT sensor. The designed EIT sensor system is assessed and calibrated by the inhomogeneities in both water and soil media. The impedances are measured for multiple tap roots using an electrical impedance spectroscopy (EIS) tool connected to the sensor at frequencies ranging from 1 kHz to 100 kHz. The changes in conductivity are calculated by obtaining the boundary voltages from the measured impedances for a given stimulation current. A non-invasive imaging method is utilized, and the spectral changes are observed accordingly to evaluate the growth of the roots. A further root analysis helps us estimate the root biomass non-destructively in real-time. The root size (such as, weight, length) is correlated with the measured impedances. A regression analysis is performed using the least square method, and more than 97% correlation is found for the biomass estimation of carrot roots with an RMSE of 4.516. The obtained models are later validated using a new and separate set of carrot root samples and the accuracy of the predicted models is found to be 93% or above. A complete electrode model is utilized, and the reconstruction analysis is performed and optimized by utilizing the impedance imaging technique in difference method. The tomography of the root is reconstructed with finite element method (FEM) modeling considering one-step Gauss-Newton (GN) algorithm which is carried out using an open source software known as electrical impedance and diffuse optical tomography reconstruction software (EIDORS).

Plant phenotyping relevance

EITセンサーと画像再構成を開発し、根の成長・バイオマスを非破壊推定する手法を検証しており、植物表現型取得が研究の中心です。

abstracta dynamic and adjustable electrode array sensor system is designed for developing a cost-effective, high-speed data acquisition system based on electrical impedance tomography (EIT)
abstractA further root analysis helps us estimate the root biomass non-destructively in real-time.
abstractmore than 97% correlation is found for the biomass estimation of carrot roots with an RMSE of 4.516. The obtained models are later validated using a new and separate set of carrot root samples

Code and data availability

The article describes an EIT sensor system for carrot tap-root biomass estimation, but no blocks contain a data availability statement, deposited phenotype/impedance datasets, author analysis code, or trained models. EIDORS is only cited as a generic third-party open-source library, not a paper-specific asset, and no补充

No evidence-backed public reproduction asset is currently recorded.

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