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学习障碍个体与健康对照者的皮质听觉诱发电位及言语半球特化:一项初步研究。

Cortical auditory evoked potentials and hemispheric specialization of speech in individuals with learning disability and healthy controls: A preliminary study.

作者信息

Bhat Mayur, Palaniswamy Hari Prakash, Pichaimuthu Arivudai Nambi, Thomas Nitha

机构信息

Department of Speech and Hearing, School of Allied Health Sciences, Manipal, Karnataka, 576104, India.

Department of Speech and Hearing, Kasturba Medical College Hospital, Mangalore, Karnataka, 575003, India.

出版信息

F1000Res. 2018 Dec 17;7:1939. doi: 10.12688/f1000research.17029.1. eCollection 2018.

Abstract

Dichotic listening (DL) technique is a behavioral non-invasive tool which is used in studying hemispheric lateralization. Previous studies using behavioral DL have hypothesized that individuals with learning disabilities (LD) exhibit a lack of cortical specialization for processing speech stimulus. However, there is no event related potential (ERP) evidence, hence the main objective of the study is to explore hemispheric asymmetry using cortical auditory evoked potential (CAEPs) in normal hearing adults and also to compare the same in children with LD and healthy controls. CAEPs were recorded in 16 normal hearing young adults, eight right-handed children with LD and their age matched controls. Two stop constants (/Pa/ - voiceless, bilabial, stop: /Ta/ - voiceless, alveolar, stop) were chosen for this experiment and presented in each ear and dichotically in two different orders (/pa-ta/, /ta-pa/). ERPs were processed using a standard pipeline, and electrodes readings over the left and right hemispheres were averaged to create left and right regions of interest (ROI). The CAEPs were analyzed for mean amplitude and peak latency of P1-N1-P2 components. The current study results suggest no statistically significant difference between the two stimulus in monaural condition and absence of order effect in dichotic condition. In healthy controls the CAEP latencies were shorter over the left hemisphere in both monaural and dichotic conditions in adults and control children. However, it was very evident that such a difference was lacking in children with LD. Hemispheric asymmetry can be detected using CAEPs for speech stimulus. The measures are consistent and void of stimulus or order effect. Taken together, the findings of current study, both monaural and dichotic condition illustrates the hemispheric differences in processing speech stimuli in normal hearers. Absence of latency differences between hemispheres in children with LD indicate a lack of hemispheric asymmetry.

摘要

双耳分听(DL)技术是一种用于研究半球功能侧化的行为学非侵入性工具。以往使用行为学双耳分听的研究推测,学习障碍(LD)个体在处理言语刺激时缺乏皮质特化。然而,尚无事件相关电位(ERP)证据,因此本研究的主要目的是利用皮质听觉诱发电位(CAEPs)探索正常听力成年人的半球不对称性,并比较LD儿童与健康对照儿童的情况。对16名正常听力的年轻成年人、8名右利手LD儿童及其年龄匹配的对照者记录了CAEPs。本实验选择了两个塞音常数(/Pa/——清辅音、双唇音、塞音:/Ta/——清辅音、齿龈音、塞音),分别在每只耳朵呈现,并以两种不同顺序双耳呈现(/pa-ta/,/ta-pa/)。使用标准流程处理ERP,并对左、右半球的电极读数进行平均,以创建左、右感兴趣区域(ROI)。分析CAEPs的P1-N1-P2成分的平均振幅和峰潜伏期。当前研究结果表明,在单耳条件下两种刺激之间无统计学显著差异,在双耳条件下无顺序效应。在健康对照者中,无论是在单耳还是双耳条件下,成年人及对照儿童的左半球CAEP潜伏期均较短。然而,很明显LD儿童缺乏这种差异。可以使用CAEPs检测言语刺激的半球不对称性。这些测量结果一致,且无刺激或顺序效应。综上所述,本研究在单耳和双耳条件下的结果均说明了正常听力者在处理言语刺激时的半球差异。LD儿童半球间潜伏期差异的缺乏表明缺乏半球不对称性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b675/6449798/9c7e9b2f66e6/f1000research-7-18618-g0000.jpg

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