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用于评估人工耳蜗电刺激传播的仪器化耳蜗模型。

An Instrumented Cochlea Model for the Evaluation of Cochlear Implant Electrical Stimulus Spread.

出版信息

IEEE Trans Biomed Eng. 2021 Jul;68(7):2281-2288. doi: 10.1109/TBME.2021.3059302. Epub 2021 Jun 17.

Abstract

Cochlear implants use electrical stimulation of the auditory nerve to restore the sensation of hearing to deaf people. Unfortunately, the stimulation current spreads extensively within the cochlea, resulting in "blurring" of the signal, and hearing that is far from normal. Current spread can be indirectly measured using the implant electrodes for both stimulating and sensing, but this provides incomplete information near the stimulating electrode due to electrode-electrolyte interface effects. Here, we present a 3D-printed "unwrapped" physical cochlea model with integrated sensing wires. We integrate resistors into the walls of the model to simulate current spread through the cochlear bony wall, and "tune" these resistances by calibration with an in-vivo electrical measurement from a cochlear implant patient. We then use this model to compare electrical current spread under different stimulation modes including monopolar, bipolar and tripolar configurations. Importantly, a trade-off is observed between stimulation amplitude and current focusing among different stimulation modes. By combining different stimulation modes and changing intracochlear current sinking configurations in the model, we explore this trade-off between stimulation amplitude and focusing further. These results will inform clinical strategies for use in delivering speech signals to cochlear implant patients.

摘要

人工耳蜗利用电刺激听神经来恢复聋人的听觉。不幸的是,刺激电流在耳蜗内广泛扩散,导致信号“模糊”,听力远非正常。可以使用植入电极进行刺激和感应来间接测量电流扩散,但由于电极-电解质界面效应,在刺激电极附近提供的信息并不完整。在这里,我们提出了一种具有集成感应线的 3D 打印“展开”物理耳蜗模型。我们在模型的壁中集成电阻器,以模拟电流通过耳蜗骨壁的扩散,并通过与耳蜗植入患者体内的电测量进行校准来“调整”这些电阻器的阻值。然后,我们使用该模型比较不同刺激模式(包括单极、双极和三极配置)下的电流扩散。重要的是,在不同刺激模式之间观察到刺激幅度和电流聚焦之间的权衡。通过结合不同的刺激模式并改变模型中的耳蜗内电流下沉配置,我们进一步探索了刺激幅度和聚焦之间的这种权衡。这些结果将为向耳蜗植入患者传递语音信号的临床策略提供信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/05e2/8215857/2d1beec838f3/jiang1-3059302.jpg

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