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首页> 外文期刊>Frontiers in Bioengineering and Biotechnology >Measuring the Electrical Status of the Bionic Ear. Re-thinking the Impedance in Cochlear Implants
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Measuring the Electrical Status of the Bionic Ear. Re-thinking the Impedance in Cochlear Implants

机译:测量仿生耳的电气状态。重新思考耳蜗植入物的阻抗

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As in any biophysical electrode-tissue environment, impedance measurement shows a complex relationship which reflects the electrical characteristics of the medium. In cochlear implants (CIs), which is mostly a stimulation-oriented device, the actual clinical approach only considers one arbitrary time-measure of the impedance. However, to determine the main electrical properties of the cochlear medium, the overall impedance and its subcomponents (i.e., access resistance and polarization impedance) should be described. We here characterized, validated and discussed a novel method to calculate impedance subcomponents based on CI measurement capabilities. With an electronic circuit of the cochlear electrode-tissue interface and its computational simulation, the access resistance and polarization impedance were modelled. Values of each electrical component were estimated through a custom-made pulse delivery routine and the acquisition of multiple data points. Using CI hardware, results fell within the electronic components nominal errors (±10%). Considering the method’s accuracy and reliability, it is readily available to be applied in research-clinical use. In the man-machine nature of the CI, this represents the basis to optimize the communication between a CI electrode and the spiral ganglion cells.
机译:与任何生物物理电极组织环境一样,阻抗测量显示了反映介质的电特性的复杂关系。在耳蜗植入物(CIS)中,这主要是刺激导向的装置,实际的临床方法仅考虑一个任意时间测量阻抗。然而,为了确定耳蜗介质的主要电性能,应描述总阻抗及其子组件(即,访问电阻和偏振阻抗)。我们在这里表征,验证并讨论了一种基于CI测量能力计算阻抗子组件的新方法。利用耳蜗电极组织接口的电子电路及其计算仿真,建模了接入电阻和偏振阻抗。通过定制脉冲传递例程估计每个电气分量的值并获取多个数据点。使用CI硬件,结果落入电子元件标称误差(±10%)。考虑到该方法的准确性和可靠性,它很容易应用于研究临床用途。在CI的人机性质中,这代表了优化CI电极和螺旋神经节细胞之间的通信的基础。

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