Gordon K A, Papsin B C, Harrison R V
Cochlear Implant Laboratory, the Hospital for Sick Children, and Department of Otolaryngology-Head and Neck Surgery, University of Toronto, Ontario, Canada.
Clin Neurophysiol. 2007 Aug;118(8):1671-84. doi: 10.1016/j.clinph.2007.04.030. Epub 2007 Jun 27.
The role of apical versus basal cochlear implant electrode stimulation on central auditory development was examined. We hypothesized that, in children with early onset deafness, auditory development evoked by basal electrode stimulation would differ from that evoked more apically.
Responses of the auditory nerve and brainstem, evoked by an apical and a basal implant electrode, were measured over the first year of cochlear implant use in 50 children with early onset severe to profound deafness who used hearing aids prior to implantation.
Responses at initial stimulation were of larger amplitude and shorter latency when evoked by the apical electrode. No significant effects of residual hearing or age were found on initial response amplitudes or latencies. With implant use, responses evoked by both electrodes showed decreases in wave and interwave latencies reflecting decreased neural conduction time through the brainstem. Apical versus basal differences persisted with implant experience with one exception; eIII-eV interlatency differences decreased with implant use.
Acute stimulation shows prolongation of basally versus apically evoked auditory nerve and brainstem responses in children with severe to profound deafness. Interwave latencies reflecting neural conduction along the caudal and rostral portions of the brainstem decreased over the first year of implant use. Differences in neural conduction times evoked by apical versus basal electrode stimulation persisted in the caudal but not rostral brainstem.
Activity-dependent changes of the auditory brainstem occur in response to both apical and basal cochlear implant electrode stimulation.
研究人工耳蜗电极顶端刺激与基底刺激对中枢听觉发育的作用。我们假设,在早发性耳聋儿童中,基底电极刺激诱发的听觉发育与更靠顶端的电极刺激诱发的听觉发育会有所不同。
对50名早发性重度至极重度耳聋儿童在人工耳蜗使用的第一年期间,测量其顶端和基底植入电极诱发的听神经和脑干反应,这些儿童在植入前使用过助听器。
顶端电极诱发的初始刺激反应具有更大的振幅和更短的潜伏期。未发现残余听力或年龄对初始反应振幅或潜伏期有显著影响。随着人工耳蜗的使用,两个电极诱发的反应均显示波峰和波间期潜伏期缩短,这反映了通过脑干的神经传导时间减少。除了一个例外,顶端与基底的差异在人工耳蜗使用过程中持续存在;eIII - eV的间期差异随着人工耳蜗的使用而减小。
急性刺激显示,在重度至极重度耳聋儿童中,基底刺激诱发的听神经和脑干反应相较于顶端刺激诱发的反应有延长。在人工耳蜗使用的第一年,反映沿脑干尾端和头端部分神经传导的波间期潜伏期缩短。顶端与基底电极刺激诱发的神经传导时间差异在脑干尾端持续存在,但在头端不存在。
听脑干的活动依赖性变化发生于对人工耳蜗电极顶端和基底刺激的反应中。