Pabst Oliver, Andersen Steinar, Bhatti Soban Ali, Brevik Jørgen, Fallaas Simen Anthony, Fjeldstad Mads, Gubaidulin Artiom, Madsen Kjetil Vermundsen, Nomedal Mats Ricardo, Slettemoen Sondre Fortun, Adriaenssens Halvard Yri, Hansen Sean Andre, Myrvik Tommy, Rostad Eivind, Skår Torleif, Tuv Kristian, Wood Sebastian Edmund Pedersen, Åsen Daniel
Department of Physics, University of Oslo, Oslo, Norway.
J Electr Bioimpedance. 2019 Dec 26;10(1):83-89. doi: 10.2478/joeb-2019-0012. eCollection 2019 Jan.
Non-linear electrical properties of a (biological) tissue can be revealed by non-linear electrical measurements, which means that the applied stimulus itself affects the measurement. If resulting voltage-current plots exhibit pinched hysteresis loops, the underlying tissue may be classified as a memristor, a state dependent resistor. The aloe vera plant and apples have been found to be memristors. However, polarization processes on the electrodes are also non-linear and may affect the measurement. Apples and aloe vera conduct electrical current very well and it is likely that the recordings are actually dominated by the polarization impedance of the electrodes. Here, we study the non-linear properties of aloe vera and apples with two different measurement electrode types. Furthermore, we measured also on the extracted liquids from one aloe vera leaf and one apple, leading to similar results. We concluded, unlike previous studies on these subjects, that the memristive properties originate from electrochemical reactions on the electrodes rather than the apples or aloe vera themselves.
(生物)组织的非线性电学特性可通过非线性电学测量来揭示,这意味着所施加的刺激本身会影响测量结果。如果所得的电压-电流图呈现出收缩的磁滞回线,则潜在的组织可被归类为忆阻器,即一种状态依赖电阻器。已发现芦荟植物和苹果是忆阻器。然而,电极上的极化过程也是非线性的,可能会影响测量。苹果和芦荟的导电性能非常好,很可能记录结果实际上由电极的极化阻抗主导。在这里,我们使用两种不同类型的测量电极研究了芦荟和苹果的非线性特性。此外,我们还对一片芦荟叶和一个苹果提取的液体进行了测量,得到了类似的结果。我们得出结论,与之前关于这些主题的研究不同,忆阻特性源自电极上的电化学反应,而非苹果或芦荟本身。