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Fractional order modeling of diffusion processes: A new approach for glucose concentration estimation

机译:扩散过程的分数级建模:葡萄糖浓度估计的一种新方法

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This paper presents the application of fractional calculus tools, i.e. fractional order impedance and Cole-Cole elements to detect, measure and estimate glucose concentrations by means of electrochemistry. Fractional calculus can provide a concise model for the description of the dynamic events that occur in biological tissues. The concepts of fractional calculus has been successfully applied in physics, chemistry and material science, electrodes and viscolelastic materials over extended ranges of time and frequency. In this paper, the fractional order impedance model is presented and compared with the measured impedance. The model parameters are related to various physical conditions of the test-cells and a baseline measurements along with blind evaluation are presented. The results indicate that the proposed model is valid in a limited range of frequencies and generalization for higher order models is possible.
机译:本文介绍了分数微积分工具,即分数阶阻抗和COLE-COLE元素通过电化学检测,测量和估计葡萄糖浓度。分数微积分可以提供一种简明模型,用于描述生物组织中发生的动态事件。分数微积分的概念已成功应用于物理,化学和材料科学,电极和粘体材料在扩展的时间和频率范围内。在本文中,提出了分数阶阻抗模型并与测量阻抗进行了比较。模型参数与测试单元的各种物理条件相关,并且呈现基线测量以及盲评估。结果表明,所提出的模型在有限范围的频率中有效,并且可以为更高阶模型的概括。

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