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先天性失明儿童对语音线索的皮层下编码

Subcortical encoding of speech cues in children with congenital blindness.

作者信息

Jafari Zahra, Malayeri Saeed

机构信息

Rehabilitation Research Center (RRC), Iran University of Medical Sciences (IUMS), Tehran, Iran.

Department of Basic Sciences in Rehabilitation, School of Rehabilitation Sciences, Iran University of Medical Sciences (IUMS), Tehran, Iran.

出版信息

Restor Neurol Neurosci. 2016 Sep 21;34(5):757-68. doi: 10.3233/RNN-160639.

Abstract

BACKGROUND

Congenital visual deprivation underlies neural plasticity in different brain areas, and provides an outstanding opportunity to study the neuroplastic capabilities of the brain.

OBJECTIVES

The present study aimed to investigate the effect of congenital blindness on subcortical auditory processing using electrophysiological and behavioral assessments in children.

METHODS

A total of 47 children aged 8-12 years, including 22 congenitally blind (CB) children and 25 normal-sighted (NS) control, were studied. All children were tested using an auditory brainstem response (ABR) test with both click and speech stimuli. Speech recognition and musical abilities were tested using standard tools.

RESULTS

Significant differences were observed between the two groups in speech ABR wave latencies A, F and O (p≤0.043), wave amplitude F (p = 0.039), V-A slope (p = 0.026), and three spectral magnitudes F0, F1 and HF (p≤0.002). CB children showed a superior performance compared to NS peers in all the subtests and the total score of musical abilities (p≤0.003). Moreover, they had significantly higher scores during the nonsense syllable test in noise than the NS children (p = 0.034). Significant negative correlations were found only in CB children between the total music score and both wave A (p = 0.039) and wave F (p = 0.029) latencies, as well as nonsense-syllable test in noise and the wave A latency (p = 0.041).

CONCLUSION

Our results suggest that neuroplasticity resulting from congenital blindness can be measured subcortically and has a heightened effect on temporal, musical and speech processing abilities. The findings have been discussed based on models of plasticity and the influence of corticofugal modulation in synthesizing complex auditory stimuli.

摘要

背景

先天性视觉剥夺是不同脑区神经可塑性的基础,为研究大脑的神经可塑性能力提供了绝佳机会。

目的

本研究旨在通过对儿童进行电生理和行为评估,探讨先天性失明对皮层下听觉加工的影响。

方法

共研究了47名8至12岁的儿童,其中包括22名先天性失明(CB)儿童和25名视力正常(NS)的对照儿童。所有儿童均使用听觉脑干反应(ABR)测试,采用短声和言语刺激。使用标准工具测试言语识别和音乐能力。

结果

两组在言语ABR波潜伏期A、F和O(p≤0.043)、波幅F(p = 0.039)、V - A斜率(p = 0.026)以及三个频谱幅度F0、F1和HF(p≤0.002)方面存在显著差异。与NS同龄人相比,CB儿童在所有子测试和音乐能力总分方面表现更优(p≤0.003)。此外,他们在噪声中的无意义音节测试得分显著高于NS儿童(p = 0.034)。仅在CB儿童中发现音乐总分与波A(p = 0.039)和波F(p = 0.029)潜伏期以及噪声中的无意义音节测试与波A潜伏期之间存在显著负相关(p = 0.041)。

结论

我们的结果表明,先天性失明导致的神经可塑性可在皮层下测量,并且对时间、音乐和言语加工能力有增强作用。基于可塑性模型以及皮质离心调制在合成复杂听觉刺激中的影响对研究结果进行了讨论。

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