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Accurate Empirical Fractional-Order Electrical Models of Young and Old Dentines

机译:年轻和老牙的精确经验分数阶电模型

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Electrical impedance spectroscopy (EIS) is a fast, non-invasive, and safe technique for bioimpedance measurement. In dental research, EIS has been used to detect tooth cracks and caries with higher accuracy than visual and radiographic methods. Recently, a study has been reported on effect of age on impedance measurements for two age groups by employing EIS. The aim of that study was to demonstrate the usefulness of fractional calculus in equivalent circuit modeling. In proposed double dispersion Cole impedance (C-C) models, both resistance and pseudo-capacitance values were found to be significantly different for both age groups. However, in our study, the first time it was found out that proposed models’ total pseudo-capacitance values of both young and old dentines can be reduced by 34% and 7.5%, respectively, if recurrent electrical impedance model for n = 2 bifurcations to be used. Secondly, new empirical fractional-order electrical models of human tooth using the optimized Valsa network with EIA standard compliant RC values are reported that provide better understanding of the structure of dentine from resistance and capacitance point of view.
机译:电阻抗光谱法(EIS)是一种快速,无创且安全的生物阻抗测量技术。在牙科研究中,EIS已被用于检测牙齿裂缝和龋齿,其准确性高于视觉和射线照相方法。近来,已经报道了通过使用EIS对两个年龄组的年龄对阻抗测量的影响的研究。该研究的目的是证明分数阶微积分在等效电路建模中的有用性。在建议的双色散科尔阻抗(C-C)模型中,发现两个年龄组的电阻值和伪电容值都显着不同。但是,在我们的研究中,首次发现,如果n = 2分叉的复发性电阻抗模型,建议模型的年轻和老牙本质的总伪电容值可以分别降低34%和7.5%。要使用的。其次,据报道,使用经过优化的Valsa网络和符合EIA标准的RC值的人类牙齿的新的经验分数阶电学模型,可以从电阻和电容的角度更好地了解牙本质的结构。

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