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Plant Tissue Modelling Using Power-Law Filters

Sensors · 28 Jul 2022 · 10.3390/s22155659

Abstract

Impedance spectroscopy has became an essential non-invasive tool for quality assessment measurements of the biochemical and biophysical changes in plant tissues. The electrical behaviour of biological tissues can be captured by fitting its bio-impedance data to a suitable circuit model. This paper investigates the use of power-law filters in circuit modelling of bio-impedance. The proposed models are fitted to experimental data obtained from eight different fruit types using a meta-heuristic optimization method (the Water Cycle Algorithm (WCA)). Impedance measurements are obtained using a Biologic SP150 electrochemical station, and the percentage error between the actual impedance and the fitted models' impedance are reported. It is found that a circuit model consisting of a combination of two second-order power-law low-pass filters shows the least fitting error.

Plant phenotyping relevance

植物組織の非破壊インピーダンス測定データを回路モデルで推定する手法の開発・誤差評価が中心であり、果実組織の生物物理・生化学的状態の測定法として植物フェノタイピングに該当する。

abstractImpedance spectroscopy has became an essential non-invasive tool for quality assessment measurements of the biochemical and biophysical changes in plant tissues.
abstractThis paper investigates the use of power-law filters in circuit modelling of bio-impedance.
abstractIt is found that a circuit model consisting of a combination of two second-order power-law low-pass filters shows the least fitting error.

Code and data availability

The paper reports bio-impedance measurements of eight fruit types fitted with power-law filter models using the Water Cycle Algorithm, but the supplied blocks contain no data availability statement, no public dataset deposit, and no author code/workflow URL. The measured impedance data and Matlab post-processing code (

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