Perényi Ádám, Nagy Roland, Dimák Balázs, Csanády Miklós, Jóri József, Kiss József Géza, Rovó László
Fül-Orr-Gégészeti és Fej-Nyaksebészeti Klinika, Szegedi Tudományegyetem, Általános Orvostudományi Kar Szeged, Tisza Lajos krt. 111., 6725.
Orv Hetil. 2019 Aug;160(31):1216-1222. doi: 10.1556/650.2019.31457.
The cochlear implants vary in electrodes in terms of length, width and proximity to the modiolus. The precurved electrode arrays could be placed closer to the modiolus and the ganglion cells compared to straight electrodes. The two types of electrode arrays provide different electrophysiological characteristics; however, proximity to the modiolus may lead to better hearing performance. To investigate our preliminary electrophysiological results that suggest that the Slim Modiolar (SM) electrode array has the potential to elicit similar neural responses as the thicker perimodiolar (Contour Advance, CA) electrode from the same generation of implants. Subjects that were implanted either with CA or SM electrodes were enrolled, 54 consecutive subjects in each group. All electrodes were introduced into the cochlea the round window. The diameter of the largest turn of the electrode arrays within the cochlea was measured through postoperative radiography. The energy consumption parameters were estimated 2 months after implantation. The mean of the largest turns of the arrays within the cochlea was 4.2 ± 0.5 mm in the SM group and 4.9 ± 1.1 mm in the CA group. 'Auto power' was 44.81 ± 5.05% and 50.85 ± 8.35% with SM and CA, respectively. Estimated energy consumption was lower with SM. The differences were statistically significant. Our measurements for a large cohort in each group suggest that the SM electrode array takes a significantly closer position to the modiolus than the CA. This finding supports our earlier electrophysiological result and indicates better performance abilities. Orv Hetil. 2019; 160(31): 1216-1222.
不同的人工耳蜗电极在长度、宽度以及与蜗轴的距离方面存在差异。与直电极相比,预弯曲电极阵列能够更靠近蜗轴和神经节细胞。这两种类型的电极阵列具有不同的电生理特性;然而,靠近蜗轴可能会带来更好的听力表现。为了研究我们的初步电生理结果,该结果表明纤细蜗轴(SM)电极阵列有可能引发与同一代植入物中较厚的蜗周(轮廓进阶,CA)电极相似的神经反应。招募了植入CA或SM电极的受试者,每组54名连续受试者。所有电极均通过圆窗插入耳蜗。术后通过放射成像测量电极阵列在耳蜗内最大转弯处的直径。植入后2个月估算能量消耗参数。SM组中电极阵列在耳蜗内最大转弯处的平均值为4.2±0.5毫米,CA组为4.9±1.1毫米。SM和CA的“自动功率”分别为44.81±5.05%和50.85±8.35%。SM的估算能量消耗较低。差异具有统计学意义。我们对每组大量受试者的测量表明,SM电极阵列比CA电极阵列更靠近蜗轴。这一发现支持了我们早期的电生理结果,并表明其具有更好的性能。《匈牙利医学周报》。2019年;160(31):1216 - 1222。