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Fast nonlinear region localisation for nonlinear dielectric spectroscopy of biological suspensions

机译:快速非线性区域定位用于生物悬浮液的非线性介电谱

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The nonlinear properties of biological suspensions have been previously presented as a bulk phenomenon without the influences of the electrodes. However, some authors have showed that the behaviour of a biological suspension is due to the nonlinear characteristics of the electrode-electrolyte interface (EEI), which is modulated by the presence of yeast cells. We have developed a method, complementary to the nonlinear dielectric spectroscopy (NLDS) which is used for the study of the behaviour of EEI with resting cell suspensions of Saccharomyces cerevisiae.The method allows researchers to detect simply and quickly the voltage and frequency ranges where the metabolic activity of yeasts is detectable. This method does not replace NLDS, and aims to reduce the time during which the electrodes are exposed to corrosion by high voltages. In this paper we applied AC overpotentials (10-630. mV) with frequencies in the range from 1 to 1000. Hz. Also, we measured current harmonic distortion produced by the nonlinearity of the interface. Changes in the transfer function were observed when yeast suspension was used. Apart from the nonlinear response typical of the EEI, we also observed the biological nonlinear behaviour. The changes in the transfer functions were assessed using the overlapping index which was defined in terms of the conditional probability. The methodology was contrasted favourably with Fourier analysis. This novel strategy has the advantages of simplicity, sensitivity, reproducibility and involves basic tools such as the usual measurement of current.
机译:先前已将生物悬浮液的非线性特性表示为整体现象,而没有电极的影响。然而,一些作者已经表明,生物悬浮液的行为归因于电极-电解质界面(EEI)的非线性特性,该特性受酵母细胞的存在调节。我们开发了一种方法来补充非线性介电谱(NLDS),该方法用于研究啤酒酵母静息细胞悬浮液的EEI行为,该方法使研究人员能够快速简便地检测出酵母的代谢活性是可检测的。该方法不能替代NLDS,其目的是减少电极暴露于高压下的时间。在本文中,我们应用了频率范围为1至1000 Hz的交流电超电势(10-630。mV)。此外,我们测量了由于界面非线性而产生的电流谐波失真。当使用酵母悬浮液时,观察到传递函数的变化。除了EEI典型的非线性响应外,我们还观察到了生物学上的非线性行为。传递函数的变化使用重叠索引进行评估,该重叠索引是根据条件概率定义的。该方法与傅立叶分析形成了鲜明的对比。这种新颖的策略具有简单,灵敏,可重现的优点,并且涉及诸如常规电流测量之类的基本工具。

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