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Compact Nonlinear Model of an Implantable Electrode Array for Spinal Cord Stimulation (SCS)

机译:植入式电极阵列对脊髓刺激(SCS)的紧凑非线性模型

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We describe the construction of a model of the electrode-electrolyte interface and surrounding electrolyte in the case of a platinum-electrode array intended for spinal-cord stimulation (SCS) application. We show that a finite, two-dimensional, resistor array provides a satisfactory model of the bulk electrolyte, and we identify the complexity required of that resistor array. The electrode-electrolyte interface is modelled in a fashion suitable for commonly-available, compact simulators using a nonlinear extension of the model of Franks (IEEE Trans. Biomed. Eng., vol. 52 , no. 7 , pp. 1295–1302, Jul. 2005) that incorporates diodes and a memristor. The electrode-electrolyte interface model accounts for the nonlinear current-overpotential characteristic and diffusion-limiting effects. We characterise a commercial, implantable, electrode array, fit the model to it, and show that the model successfully predicts subtle operational characteristics.
机译:我们描述了在旨在用于脊髓刺激(SCS)应用的铂电极阵列的情况下,电极-电解质界面和周围电解质的模型的构建。我们证明了有限的二维电阻器阵列可提供令人满意的大体积电解质模型,并且我们确定了该电阻器阵列所需的复杂性。使用Franks模型的非线性扩展(IEEE Trans。Biomed。Eng。,第52卷,第7期,第1295–1302页,英文)以适合于通用紧凑型模拟器的方式对电极-电解质界面进行建模。 (2005年7月),其中包含二极管和忆阻器。电极-电解质界面模型考虑了非线性电流-超电势特性和扩散限制效应。我们表征了一种商业的,可植入的电极阵列,对其进行了拟合,并表明该模型成功地预测了微妙的操作特性。

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