Thai-Van Hung, Gallego Stéphane, Truy Eric, Veuillet Evelyne, Collet Lionel
Department of Audiology, CNRS UMR 5020, Edouard Herriot University Hospital, Lyon, France.
Ann Otol Rhinol Laryngol. 2002 Nov;111(11):1008-14. doi: 10.1177/000348940211101111.
Bilateral cochlear implantation provides an interesting model for in vivo study of the effect of long-term profound deafness on neural transmission. We present electrophysiological observations on 2 patients implanted with the MXM Binaural Digisonic Convex system. This uncommon design consists of 2 electrode arrays placed bilaterally into the scala tympani and controlled by a single speech processor. In both patients, the duration of deafness before cochlear implantation clearly differed from one ear to the other. Electrically evoked auditory brain stem responses (EABRs) were measured and the EABRs from the ear with the longer deafness duration showed a lengthening of wave V latency. In I patient, recordings from this ear also showed a lack of reproducibility of wave III. The data suggest that neural responsiveness in the peripheral and intermediate auditory pathways is adversely affected by deafness duration. Poor EABRs on one ear possibly result from the total duration of deafness in this ear and/or compensation by the other ear.
双侧人工耳蜗植入为长期深度耳聋对神经传导影响的体内研究提供了一个有趣的模型。我们展示了对2例植入MXM双耳数字式凸面系统的患者的电生理观察结果。这种不常见的设计包括双侧置于鼓阶的2个电极阵列,并由单个言语处理器控制。在这2例患者中,人工耳蜗植入前双耳的耳聋持续时间明显不同。测量了电诱发听觉脑干反应(EABR),耳聋持续时间较长的耳朵的EABR显示V波潜伏期延长。在1例患者中,该耳的记录还显示III波缺乏重复性。数据表明,外周和中间听觉通路中的神经反应性受到耳聋持续时间的不利影响。一只耳朵的EABR不佳可能是由于该耳的总耳聋持续时间和/或另一只耳朵的代偿作用。