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Cochlear Implant Impedance Telemetry Measurements and Model Calculations to Estimate Modiolar Currents

机译:人工耳蜗阻抗遥测测量和模型计算,以估计耳廓电流

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摘要

The use of impedance and neural response telemetry measurements through stimulation and recording of electrical signals can facilitate device fitting and parameter adjustments, especially in young children. However, the detailed configuration of electrical impedances and current distributions around the electrode array is unknown and has not been able to be determined using standard impedance telemetry measures. We therefore attempted to improve the impedance measurement procedure\udby applying a more detailed model of electrical impedances of stimulation and recording electrodes within the cochlea and by developing more sophisticated measurement protocols to identify the model parameters in a given implant subject. In particular, the modiolar currents, the portion of the currents assumed to be responsible for activating the neural elements, are determined and evaluated. \udTheir predictive value for device fitting parameters is being investigated and first results have been obtained by a series of postoperative and intraoperative measurements,\udwhich will allow us to estimate changes of the modiolar current distributions over the first weeks after implantation. \udThis approach is mainly based on a published patent, and makes use of the Nucleus Matlab Toolbox and the Nucleus Implant Communicator (NIC) software. The ultimate goals of a refined model and more specific impedance measurements are\udsemiautomatic fitting and of programming parameter update procedures for CI users with varying electrical stimulation conditions.
机译:通过刺激和记录电信号来使用阻抗和神经反应遥测测量,可以促进设备的安装和参数调整,尤其是在年幼的儿童中。然而,围绕电极阵列的电阻抗和电流分布的详细配置是未知的,并且不能使用标准的阻抗遥测方法来确定。因此,我们试图通过应用耳蜗内刺激和记录电极的电阻抗的更详细模型,以及通过开发更复杂的测量协议来识别给定植入对象中的模型参数,来改进阻抗测量程序。特别是,确定并评估了模态电流,这些电流被假定为负责激活神经元。 \ ud正在研究其对设备安装参数的预测值,并通过一系列术后和术中测量获得了第一批结果,这将使我们能够估计植入后最初几周内模电流分布的变化。 \ ud此方法主要基于已公开的专利,并使用了Nucleus Matlab工具箱和Nucleus植入物通信器(NIC)软件。精炼模型和更具体的阻抗测量的最终目标是\ udsemiautomatic拟合和针对变化的电刺激条件的CI用户编程参数更新程序。

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    von Rohr, R;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 eng
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