School of Clinical Medicine.
Department of Clinical Neurosciences, University of Cambridge, Cambridge, UK.
Otol Neurotol. 2021 Jan;42(1):59-67. doi: 10.1097/MAO.0000000000002861.
This study characterises and compares electrical properties and current spread across four different makes of cochlear implants with differing electrode designs using a 3D-printed artificial cochlear model.
Cochlear implants are currently limited by current spread within the cochlea, which causes low spectral resolution of auditory nerve stimulation. Different cochlear implant makes vary in electrode size, shape, number, and configuration. How these differences affect cochlear implant current spread and function is not well known.
Each cochlear implant was inserted into a linear cochlear model containing recording electrodes along its length. Biphasic monopolar stimulation of each implant electrode was carried out, and the resultant waveform and transimpedance matrix (TIM) data obtained from the recording electrodes. This was repeated with each implant rotated 180 degrees in the cochlea model to examine the effects of electrode orientation. Impedance spectroscopy was also carried out at the apex, middle, and base of the model.
The four cochlear implants displayed similar TIM profiles and waveforms. One hundred eighty degrees rotation of each cochlear implant made little difference to the TIM profiles. Impedance spectroscopy demonstrated broad similarities in amplitude and phase across the implants, but exhibited differences in certain electrical parameters.
Implants with different designs demonstrate similar electrical performance, regardless of electrode size and spacing or electrode array dimension. In addition, rotatory maneuvers during cochlear implantation surgery are unlikely to change implant impedance properties.
本研究使用 3D 打印人工耳蜗模型,对具有不同电极设计的四种不同耳蜗植入物的电学特性和电流传播进行了特征描述和比较。
目前,耳蜗植入物受到耳蜗内电流传播的限制,这导致听觉神经刺激的光谱分辨率较低。不同的耳蜗植入物制造商在电极的大小、形状、数量和配置上存在差异。这些差异如何影响耳蜗植入物的电流传播和功能尚不清楚。
将每个耳蜗植入物插入一个线性耳蜗模型中,该模型在其长度上包含记录电极。对每个植入物电极进行双相单极刺激,并从记录电极获得相应的波形和跨导矩阵(TIM)数据。然后将每个植入物在耳蜗模型中旋转 180 度,以检查电极方向的影响。还在模型的顶点、中部和底部进行了阻抗谱分析。
四个耳蜗植入物显示出相似的 TIM 图谱和波形。每个耳蜗植入物旋转 180 度对 TIM 图谱的影响很小。阻抗谱分析表明,振幅和相位在各个植入物之间具有广泛的相似性,但在某些电参数上存在差异。
设计不同的植入物表现出相似的电性能,无论电极的大小和间距或电极阵列的维度如何。此外,耳蜗植入手术中的旋转操作不太可能改变植入物的阻抗特性。