Department of Hearing and Speech Rehabilitation, Binzhou Medical University, Yantai, China.
Department of Otolaryngology, Case Western Reserve University, Cleveland, OH.
J Speech Lang Hear Res. 2022 Oct 17;65(10):3981-3995. doi: 10.1044/2022_JSLHR-22-00008. Epub 2022 Sep 12.
Congenital deafness not only delays auditory development but also hampers the ability to perceive nonspeech and speech signals. This study aimed to use auditory event-related potentials to explore the mismatch negativity (MMN), P3a, negative wave (Nc), and late discriminative negativity (LDN) components in children with and without hearing loss.
Nineteen children with normal hearing (CNH) and 17 children with hearing loss (CHL) participated in this study. Two sets of pure tones (1 kHz vs. 1.1 kHz) and lexical tones (/ba2/ vs. /ba4/) were used to examine the auditory discrimination process.
MMN could be elicited by the pure tone and the lexical tone in both groups. The MMN latency elicited by nonspeech and speech was later in CHL than in CNH. Additionally, the MMN latency induced by speech occurred later in the left than in the right hemisphere in CNH, and the MMN amplitude elicited by speech in CHL produced a discriminative deficiency compared with that in CNH. Although the P3a latency and amplitude elicited by nonspeech in CHL and CNH were not significantly different, the Nc amplitude elicited by speech performed much lower in CHL than in CNH. Furthermore, the LDN latency elicited by nonspeech was later in CHL than in CNH, and the LDN amplitude induced by speech showed higher dominance in the right hemisphere in both CNH and CHL.
By incorporating nonspeech and speech auditory conditions, we propose using MMN, Nc, and LDN as potential indices to investigate auditory perception, memory, and discrimination.
先天性耳聋不仅会延迟听觉发育,还会阻碍对非言语和言语信号的感知能力。本研究旨在使用听觉事件相关电位来探讨听力正常(CNH)和听力损失(CHL)儿童的失匹配负波(MMN)、P3a、负波(Nc)和晚期辨别负波(LDN)成分。
19 名听力正常的儿童(CNH)和 17 名听力损失的儿童(CHL)参加了这项研究。使用两套纯音(1 kHz 对 1.1 kHz)和词汇音(/ba2/ 对 /ba4/)来检查听觉辨别过程。
两组均能引出 MMN 对纯音和词汇音的反应。CHL 组的非言语和言语诱发的 MMN 潜伏期较 CNH 组晚。此外,CNH 组言语诱发的 MMN 潜伏期在左侧半球比右侧半球晚,而 CHL 组言语诱发的 MMN 振幅与 CNH 组相比存在辨别缺陷。虽然 CHL 和 CNH 组非言语诱发的 P3a 潜伏期和振幅无显著差异,但言语诱发的 Nc 振幅在 CHL 组明显低于 CNH 组。此外,CHL 组的非言语诱发的 LDN 潜伏期比 CNH 组晚,而 CNH 和 CHL 组的言语诱发的 LDN 振幅在右侧半球表现出更高的优势。
通过结合非言语和言语听觉条件,我们提出使用 MMN、Nc 和 LDN 作为潜在的指标来研究听觉感知、记忆和辨别。