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对称性听力损失患者的行为和电生理双耳处理

Behavioral and electrophysiologic binaural processing in persons with symmetric hearing loss.

作者信息

Leigh-Paffenroth Elizabeth D, Roup Christina M, Noe Colleen M

机构信息

James H. Quillen VA Medical Center, Mountain Home, TN, USA.

出版信息

J Am Acad Audiol. 2011 Mar;22(3):181-93; quiz 194-5. doi: 10.3766/jaaa.22.3.6.

Abstract

BACKGROUND

Binaural hearing improves our ability to understand speech and to localize sounds. Hearing loss can interfere with binaural cues, and despite the success of amplification, ∼25% of people with bilateral hearing loss fit with two hearing aids choose to wear only one (e.g., Brooks and Bulmer, 1981). One explanation is reduced binaural processing, which occurs when the signal presented to one ear interferes with the perception of the signal presented to the other ear (e.g., Jerger et al, 1993). Typical clinical measures, however, are insensitive to binaural processing deficits.

PURPOSE

The purpose of this study was to determine the extent to which behavioral measures of binaural performance were related to electrophysiological measures of binaural processing in subjects with symmetrical pure-tone sensitivity.

RESEARCH DESIGN

The relationship between middle latency responses (MLRs) and behavioral performance on binaural listening tasks was assessed by Spearman's rho correlation analyses. Separate repeated measures analyses of variance (RMANOVAs) were performed for MLR latency and MLR amplitude.

STUDY SAMPLE

Nineteen subjects were recruited for the present study based on a clinical presentation of symmetrical pure-tone sensitivity with asymmetrical performance on a word-recognition in noise test. This subpopulation of patients included both subjects with and subjects without hearing loss.

DATA COLLECTION AND ANALYSIS

Monaural and binaural auditory processing was measured behaviorally and electrophysiologically in right-handed subjects. The behavioral tests included the Words-in-Noise test (WIN), the dichotic digits test (DDT), and the 500 Hz masking level difference (MLD). Electrophysiologic responses were measured by the binaural interaction component (BIC) of the MLR. The electrophysiological responses were analyzed to examine the effects of peak (Na, Pa, and Nb) and condition (monaural left, monaural right, binaural, and BIC) on MLR amplitude and latency.

RESULTS

Significant correlations were found among electrophysiological measures of binaural hearing and behavioral tests of binaural hearing. A strong correlation between the MLD and the binaural Na-Pa amplitude was found (r = .816).

CONCLUSIONS

The behavioral and electrophysiological measures used in the present study clearly showed evidence of reduced binaural processing in ∼10 of the subjects in the present study who had symmetrical pure-tone sensitivity. These results underscore the importance of understanding binaural auditory processing and how these measures may or may not identify functional auditory problems.

摘要

背景

双耳听觉可提高我们理解言语和定位声音的能力。听力损失会干扰双耳线索,尽管放大技术取得了成功,但在佩戴两个助听器的双侧听力损失患者中,约25%的人选择只佩戴一个(例如,布鲁克斯和布尔默,1981年)。一种解释是双耳处理能力下降,当呈现给一只耳朵的信号干扰呈现给另一只耳朵的信号的感知时就会发生这种情况(例如,杰格尔等人,1993年)。然而,典型的临床测量方法对双耳处理缺陷不敏感。

目的

本研究的目的是确定在纯音敏感度对称的受试者中,双耳性能的行为测量与双耳处理的电生理测量之间的相关程度。

研究设计

通过斯皮尔曼等级相关分析评估中潜伏期反应(MLR)与双耳听力任务的行为表现之间的关系。对MLR潜伏期和MLR振幅分别进行重复测量方差分析(RMANOVA)。

研究样本

基于对称纯音敏感度的临床表现以及噪声中单词识别测试的不对称表现,招募了19名受试者参与本研究。这一亚组患者包括有听力损失和无听力损失的受试者。

数据收集与分析

对右利手受试者进行单耳和双耳听觉处理的行为测量和电生理测量。行为测试包括噪声中的单词测试(WIN)、双耳数字测试(DDT)和500赫兹掩蔽级差(MLD)。通过MLR的双耳相互作用成分(BIC)测量电生理反应。分析电生理反应,以检查峰值(Na、Pa和Nb)和条件(单耳左、单耳右、双耳和BIC)对MLR振幅和潜伏期的影响。

结果

在双耳听力的电生理测量和双耳听力的行为测试之间发现了显著相关性。发现MLD与双耳Na-Pa振幅之间存在强相关性(r = 0.816)。

结论

本研究中使用的行为和电生理测量方法清楚地表明,在本研究中约10名纯音敏感度对称的受试者中存在双耳处理能力下降的证据。这些结果强调了理解双耳听觉处理以及这些测量方法如何可能或不可能识别功能性听觉问题的重要性。

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