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高频感音神经性听力损失成人中使用布莱克曼窗和线性窗选通的短纯音的听性脑干反应阈值

ABR thresholds to tonebursts gated with Blackman and linear windows in adults with high-frequency sensorineural hearing loss.

作者信息

Purdy Suzanne C, Abbas Paul J

机构信息

National Acoustic Laboratories, Chatswood, NSW, Australia.

出版信息

Ear Hear. 2002 Aug;23(4):358-68. doi: 10.1097/00003446-200208000-00011.

Abstract

OBJECTIVE

The goal of this study was to determine whether tonebursts gated on and off using a nonlinear, exact-Blackman-gating function would be a more frequency-specific stimulus for auditory brain stem response audiometry than the more traditional 2-1-2 cycle linearly gated toneburst.

DESIGN

Toneburst ABRs were recorded in 10 adults with normal hearing and in 18 adults with sloping high-frequency sensorineural hearing loss. It was hypothesized that any advantage of the Blackman stimuli for frequency-specific threshold assessment should be evident in hearing-impaired subjects with hearing loss confined to the 2000 to 4000 Hz frequency region since spectral splatter in the toneburst stimuli could lead to an underestimation of hearing loss based on the ABR thresholds. ABR stimuli consisted of 2000- and 4000-Hz 2-1-2 (rise-plateau-fall) cycle linearly gated tonebursts and 1-0-1 msec exact-Blackman-gated tonebursts. An additional 0.5-0-0.5 msec 4000-Hz Blackman-gated toneburst was used to investigate whether the difference in rise/fall characteristics of the linearly and Blackman-gated tonebursts could account for any differences in ABR results at 4000 Hz. The ABR toneburst stimuli were calibrated behaviorally in 15 adults with normal hearing.

RESULTS

In the normal-hearing listeners toneburst-ABR thresholds generally exceeded behavioral thresholds by 10 to 13 dB for all stimuli. Correlations of 0.85 to 0.96 were obtained between 2000 and 4000 Hz toneburst ABR thresholds and pure-tone audiometric thresholds in the hearing-impaired listeners. Results were similar for Blackman- and linearly gated stimuli.

CONCLUSIONS

There were no clear differences between Blackman- and linearly gated tonebursts in terms of how well ABR thresholds predicted pure-tone thresholds at 2000 and 4000 Hz. In general audiometric thresholds were predicted with good accuracy (+/-15 dB) by the toneburst ABR thresholds. The 4000-Hz audiometric threshold was underestimated in one subject with a very steeply sloping hearing loss by both Blackman- and linearly gated toneburst ABR thresholds, indicating that ipsilateral masking such as notched noise would be needed to ensure frequency specificity in this and similar cases.

摘要

目的

本研究的目的是确定使用非线性精确布莱克曼门控函数进行开/关控制的短纯音,对于听觉脑干反应测听法而言,是否会比更传统的2-1-2周期线性门控短纯音成为更具频率特异性的刺激。

设计

对10名听力正常的成年人和18名患有高频倾斜性感音神经性听力损失的成年人记录短纯音听觉脑干反应。假设对于听力损失局限于2000至4000赫兹频率区域的听力受损受试者,布莱克曼刺激在频率特异性阈值评估方面的任何优势都应显而易见,因为短纯音刺激中的频谱扩散可能导致基于听觉脑干反应阈值对听力损失的低估。听觉脑干反应刺激包括2000赫兹和4000赫兹的2-1-2(上升-平台-下降)周期线性门控短纯音以及1-0-1毫秒精确布莱克曼门控短纯音。还使用了一个额外的0.5-0-0.5毫秒4000赫兹布莱克曼门控短纯音,以研究线性门控和布莱克曼门控短纯音在上升/下降特性方面的差异是否可以解释4000赫兹时听觉脑干反应结果的任何差异。对15名听力正常的成年人进行了行为校准的听觉脑干反应短纯音刺激。

结果

在听力正常的受试者中,所有刺激的短纯音听觉脑干反应阈值通常比行为阈值高出10至13分贝。在听力受损的受试者中,2000赫兹和4000赫兹短纯音听觉脑干反应阈值与纯音听力计阈值之间的相关性为0.85至0.96。布莱克曼门控和线性门控刺激的结果相似。

结论

在2000赫兹和4000赫兹时,布莱克曼门控和线性门控短纯音在听觉脑干反应阈值预测纯音阈值的能力方面没有明显差异。一般来说,短纯音听觉脑干反应阈值能以较高的准确性(±15分贝)预测听力计阈值。在一名听力损失非常陡峭的受试者中,布莱克曼门控和线性门控短纯音听觉脑干反应阈值均低估了4000赫兹的听力计阈值,这表明在这种及类似情况下,需要同侧掩蔽(如陷波噪声)来确保频率特异性。

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