首页> 外文期刊>Journal of the American Academy of Audiology >Auditory processing following sequential bilateral cochlear implantation: a pediatric case study using event-related potentials.
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Auditory processing following sequential bilateral cochlear implantation: a pediatric case study using event-related potentials.

机译:顺序双侧人工耳蜗植入后的听觉处理:使用事件相关电位的儿科案例研究。

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BACKGROUND: Past studies using event-related potentials (ERPs) elicited to single syllable stimuli in unilateral and bilateral cochlear implant users have suggested reorganization of the auditory cortex within the first 6-8 mo postimplantation (Sharma et al, 2002a, 2002b, 2006; Bauer et al, 2006). Better behavioral performance with bilateral implants is expected when bilateral cochlear implantation is performed simultaneously or when a second implant is provided after a short interval of auditory deprivation at a younger age (Murphy and O'Donoghue, 2007; Wolfe et al, 2007; Steffens et al, 2008). PURPOSE: The purpose of this case study was to examine changes in various levels of auditory processing using single syllable and word-level stimuli in a child who received bilateral cochlear implants sequentially. RESEARCH DESIGN: Brain responses were recorded at pre-activation and 2, 4, and 6 mo postactivation of a second cochlear implant using passive paradigms involving two types of auditory perception (speech and word level). Auditory stimuli were presented at 75 dB SPL(A) through a speaker above the participant's head with the cochlear implant(s) at typical user settings. Cortical responses were recorded from 128 electrodes. STUDY SAMPLE: The participant was a 6-yr-old female with the diagnosis of bilateral profound sensorineural hearing loss. She received her first cochlear implant in her right ear (2 yr, 4 mo of age), underwent revision surgery (3 yr, 6 mo of age), and later received a bilateral cochlear implant (6 yr, 8 mo of age). DATA COLLECTION AND ANALYSIS: For the purposes of the case study, the waveforms were visually examined for morphology and amplitude or latency differences between conditions. The ERPs of the cochlear implant user were compared to those from a group of five children with normal hearing. CONCLUSIONS: The results suggest that sequential bilateral cochlear implantation contributes to improved auditory processing beyond the benefits of the single implant even in users with an extended period of deafness in the later-implanted ear.
机译:背景:过去使用单侧和双侧人工耳蜗植入者的单个音节刺激引起的事件相关电位(ERPs)进行的研究表明,植入后6-8mo内听觉皮层会发生重组(Sharma等,2002a,2002b,2006; Bauer等,2006)。当同时进行双侧人工耳蜗植入或在较小的听觉剥夺间隔后再进行第二次植入时,预期双侧植入物具有更好的行为表现(Murphy和O'Donoghue,2007; Wolfe等,2007; Steffens等)等,2008)。目的:本案例研究的目的是通过顺序地接受双侧人工耳蜗的儿童,使用单音节和单词级刺激来检查听觉处理各个级别的变化。研究设计:使用涉及两种听觉感知(语音和单词水平)的被动范式,在第二个人工耳蜗激活前和激活后2、4和6个月后记录大脑反应。在典型的用户设置下,通过耳蜗植入物通过参与者头部上方的扬声器以75 dB SPL(A)呈现听觉刺激。从128个电极记录皮质反应。研究样本:参与者是一名6岁女性,诊断为双侧严重感觉神经性听力损失。她在她的右耳(2岁,4个月大)中接受了第一例人工耳蜗,进行了翻修手术(3岁,6个月大),后来又接受了双侧人工耳蜗(6岁,8个月大)。数据收集和分析:出于案例研究的目的,目视检查了波形的形态,条件之间的振幅或潜伏期差异。将人工耳蜗使用者的ERP与来自五个正常听觉儿童的ERP进行了比较。结论:结果表明,即使在后期植入的耳聋患者中长期失聪,连续的双侧耳蜗植入也有助于改善听觉处理,超出了单个植入物的优势。

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