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皮层听觉诱发电位的不应期的发育变化。

Developmental changes in refractoriness of the cortical auditory evoked potential.

作者信息

Gilley Phillip M, Sharma Anu, Dorman Michael, Martin Kathryn

机构信息

Callier Advanced Hearing Research Center, School of Behavioral and Brain Sciences, University of Texas at Dallas, 1966 Inwood Road, Dallas, TX 75235, USA.

出版信息

Clin Neurophysiol. 2005 Mar;116(3):648-57. doi: 10.1016/j.clinph.2004.09.009.

Abstract

OBJECTIVE

This study examined morphological changes in the cortical auditory evoked potential (CAEP) waveform as a function of varying stimulation rate. Stimuli were presented in a paradigm which indirectly assesses the refractory properties of the underlying neuronal generators.

METHODS

CAEPs were recorded in 50 normal-hearing children (3-12 years) and 10 young adults (24-26 years). A speech sound was presented in a stimulus train with sequentially decreasing inter-stimulus intervals (ISIs) of 2000, 1000, 560, and 360ms. Latencies and amplitudes of the P1, N1, and P2 components at the Cz electrode were examined as a function of stimulus rate and age.

RESULTS

Results revealed significant changes in the CAEP as a function of age and stimulation rate. At younger ages the N1-P2 component was elicited only at the slowest stimulation rates, and was more clearly apparent at successively faster stimulation rates as age increased.

CONCLUSIONS

We have described a stimulus paradigm that allows examination of the development of refractoriness by highlighting the interaction between age and rate on CAEP morphology.

SIGNIFICANCE

Complex maturational patterns of CAEP components are best understood when the effects of both age and stimulus rate on the CAEP waveform are considered.

摘要

目的

本研究考察了皮质听觉诱发电位(CAEP)波形随刺激率变化的形态学改变。刺激呈现采用一种间接评估潜在神经元发生器不应期特性的范式。

方法

对50名听力正常的儿童(3至12岁)和10名年轻成年人(24至26岁)记录CAEP。在一个刺激序列中呈现一个语音,刺激间隔(ISI)依次递减,分别为2000、1000、560和360毫秒。考察Cz电极处P1、N1和P2成分的潜伏期和波幅随刺激率和年龄的变化情况。

结果

结果显示,CAEP随年龄和刺激率有显著变化。在较年幼时,N1 - P2成分仅在最慢的刺激率下引出,且随着年龄增长,在相继更快的刺激率下更明显。

结论

我们描述了一种刺激范式,通过突出年龄和刺激率对CAEP形态的相互作用,能够考察不应期的发育情况。

意义

当同时考虑年龄和刺激率对CAEP波形的影响时,能更好地理解CAEP成分复杂的成熟模式。

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