Grasmeder Mary, Verschuur Carl, Ferris Robyn, Basodan Sundus, Newman Tracey, Sanderson Alan
Auditory Implant Service, University of Southampton, SO17 1BJ Southampton, UK.
Faculty of Engineering and Physical Sciences, University of Southampton, SO17 1BJ Southampton, UK.
Cochlear Implants Int. 2021 May;22(3):157-169. doi: 10.1080/14670100.2020.1863701. Epub 2021 Jan 6.
To determine if Electrode Voltage (EV) measurements are potentially suitable as a test for detecting extra-cochlear electrodes in cochlear implants (CIs).
EV measurements were made using surface electrodes in live mode in 17 adult cochlear implant (CI) users. Repeatability, the effects of stimulation level, CI active electrode position, (active) recording electrode position and stimulation mode (for Nucleus devices) were investigated.
RESULTS/DISCUSSION: Recordings made in monopolar mode showed good repeatability when the active recording electrode was placed on the ipsilateral earlobe; voltages increased linearly with stimulation level as expected. EVs for basal electrodes differed greatly between partially inserted/migrated devices, fully inserted devices with all electrodes activated, and those with deactivated basal electrodes [(2) = 10.2, < 0.05 for the most basal electrode]. EVs for Nucleus devices were small for electrodes on the array when compared to those for monopolar return electrodes, except for the participant with extra-cochlear electrodes. We argue that fibrosis around the electrode array facilitated current flow across the round window in this case.
The test appears to be a viable approach to detect electrode migration and extra-cochlear electrodes in adult CI users and may also be sensitive to discomfort caused by current leakage from the basal end of the cochlea.
确定电极电压(EV)测量是否有可能作为检测人工耳蜗(CI)中外耳蜗电极的一种测试方法。
在17名成年人工耳蜗(CI)使用者中,使用表面电极在实时模式下进行EV测量。研究了重复性、刺激水平的影响、CI有源电极位置、(有源)记录电极位置以及刺激模式(针对Nucleus设备)。
结果/讨论:当有源记录电极置于同侧耳垂时,单极模式下的记录显示出良好的重复性;电压如预期那样随刺激水平呈线性增加。部分插入/移位设备、所有电极均激活的完全插入设备以及基底电极失活的设备之间,基底电极的EV差异很大[(2)=10.2,最基底电极的<0.05]。与单极返回电极相比,Nucleus设备阵列上电极的EV较小,但有外耳蜗电极的参与者除外。我们认为,在这种情况下,电极阵列周围的纤维化促进了电流通过圆窗流动。
该测试似乎是检测成年CI使用者中电极移位和外耳蜗电极的一种可行方法,并且可能对耳蜗基底端电流泄漏引起的不适也很敏感。