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助听后单侧聋儿童听觉皮层可塑性和双侧通路发育的生物标志物研究

Biomarkers of auditory cortical plasticity and development of binaural pathways in children with unilateral hearing loss using a hearing aid.

机构信息

Department of Communication Disorders, Faculty of Medical and Health Sciences, Tel Aviv University, Tel Aviv, Israel; Hearing, Speech, and Language Center, Sheba Medical Center, Tel Hashomer, Ramat Gan, Israel.

Department of Communication Disorders, Haifa University, Haifa, Israel; Alango Technologies LTD, Tirat Carmel, Israel.

出版信息

Hear Res. 2024 Sep 15;451:109096. doi: 10.1016/j.heares.2024.109096. Epub 2024 Aug 2.

Abstract

Congenital or early-onset unilateral hearing loss (UHL) can disrupt the normal development of the auditory system. In extreme cases of UHL (i.e., single sided deafness), consistent cochlear implant use during sensitive periods resulted in cortical reorganization that partially reversed the detrimental effects of unilateral sensory deprivation. There is a gap in knowledge, however, regarding cortical plasticity i.e. the brain's capacity to adapt, reorganize, and develop binaural pathways in milder degrees of UHL rehabilitated by a hearing aid (HA). The current study was set to investigate early-stage cortical processing and electrophysiological manifestations of binaural processing by means of cortical auditory evoked potentials (CAEPs) to speech sounds, in children with moderate to severe-to-profound UHL using a HA. Fourteen children with UHL (CHwUHL), 6-14 years old consistently using a HA for 3.5 (±2.3) years participated in the study. CAEPs were elicited to the speech sounds /m/, /g/, and /t/ in three listening conditions: monaural [Normal hearing (NH), HA], and bilateral [BI (NH + HA)]. Results indicated age-appropriate CAEP morphology in the NH and BI listening conditions in all children. In the HA listening condition: (1) CAEPs showed similar morphology to that found in the NH listening condition, however, the mature morphology observed in older children in the NH listening condition was not evident; (2) P1 was elicited in all but two children with severe-to-profound hearing loss, to at least one speech stimuli, indicating effective audibility; (3) A significant mismatch in timing and synchrony between the NH and HA ear was found; (4) P1 was sensitive to the acoustic features of the eliciting stimulus and to the amplification characteristics of the HA. Finally, a cortical binaural interaction component (BIC) was derived in most children. In conclusion, the current study provides first-time evidence for cortical plasticity and partial reversal of the detrimental effects of moderate to severe-to-profound UHL rehabilitated by a HA. The derivation of a cortical biomarker of binaural processing implies that functional binaural pathways can develop when sufficient auditory input is provided to the affected ear. CAEPs may thus serve as a clinical tool for assessing, monitoring, and managing CHwUHL using a HA.

摘要

先天性或早发性单侧听力损失 (UHL) 可破坏听觉系统的正常发育。在 UHL 的极端情况下(即单侧聋),在敏感时期持续使用人工耳蜗会导致皮质重组,部分逆转单侧感觉剥夺的不利影响。然而,对于皮质可塑性(即大脑适应、重组和发展双侧通路的能力)的知识还存在差距,这种可塑性是指在轻度 UHL 中使用助听器 (HA) 进行康复时,大脑的这种能力。本研究旨在通过皮质听觉诱发电位 (CAEP) 研究使用助听器 (HA) 进行中度至重度至深度 UHL 康复的儿童的早期皮质处理和双耳处理的电生理表现。14 名年龄在 6-14 岁、使用 HA 持续 3.5(±2.3)年的 UHL 儿童参与了该研究。在三种听力条件下,使用语音声音引出 CAEPs:单耳[正常听力 (NH),HA]和双耳[BI (NH + HA)]。结果表明,所有儿童在 NH 和 BI 听力条件下均表现出与年龄相符的 CAEP 形态。在 HA 听力条件下:(1) CAEPs 表现出与 NH 听力条件下相似的形态,但 NH 听力条件下年龄较大的儿童表现出的成熟形态并不明显;(2) 除两名极重度听力损失的儿童外,所有儿童至少对一种语音刺激引出 P1,表明有效可听度;(3) 在 NH 和 HA 耳之间发现时间和同步性存在显著不匹配;(4) P1 对刺激的声学特征和 HA 的放大特性敏感。最后,大多数儿童都得出了皮质双耳相互作用成分 (BIC)。总之,本研究首次提供了使用 HA 对中度至重度至深度 UHL 进行康复可产生皮质可塑性和部分逆转不利影响的证据。双耳处理的皮质生物标志物的得出意味着,当向受影响的耳朵提供足够的听觉输入时,功能性双侧通路可以发展。因此,CAEPs 可以作为一种临床工具,用于评估、监测和管理使用 HA 的 CHwUHL。

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