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扩展听阈与响度增长:双耳模式患者中电和声学听力的互补性。

Extending the audiogram with loudness growth: The complementarity of electric and acoustic hearing in bimodal patients.

机构信息

Department of ENT/Audiology & School for Mental Health and NeuroScience (MHENS), Maastricht University Medical Centre, Maastricht, The Netherlands.

出版信息

PLoS One. 2023 Apr 20;18(4):e0277161. doi: 10.1371/journal.pone.0277161. eCollection 2023.

Abstract

INTRODUCTION

Clinically, recording hearing detection thresholds and representing them in an audiogram is the most common way of evaluating hearing loss and starting the fitting of hearing devices. As an extension, we present the loudness audiogram, which does not only show auditory thresholds but also visualizes the full course of loudness growth across frequencies. The benefit of this approach was evaluated in subjects who rely on both electric (cochlear implant) and acoustic (hearing aid) hearing.

METHODS

In a group of 15 bimodal users, loudness growth was measured with the cochlear implant and hearing aid separately using a loudness scaling procedure. Loudness growth curves were constructed, using a novel loudness function, for each modality and then integrated in a graph plotting frequency, stimulus intensity level, and loudness perception. Bimodal benefit, defined as the difference between wearing a cochlear implant and hearing aid together versus wearing only a cochlear implant, was assessed for multiple speech outcomes.

RESULTS

Loudness growth was related to bimodal benefit for speech recognition in noise and to some aspects of speech quality. No correlations between loudness and speech in quiet were found. Patients who had predominantly unequal loudness input from the hearing aid, gained more bimodal benefit for speech recognition in noise compared to those patients whose hearing aid provided mainly equivalent input.

CONCLUSION

Results show that loudness growth is related to bimodal benefit for speech recognition in noise and to some aspects of speech quality. Subjects who had different input from the hearing aid compared to CI, generally gained more bimodal benefit compared to those patients whose hearing aid provided mainly equivalent input. This suggests that bimodal fitting to create equal loudness at all frequencies may not always be beneficial for speech recognition.

摘要

简介

临床上,记录听力检测阈值并将其表示在听力图中是评估听力损失和开始听力设备适配的最常见方法。作为扩展,我们提出了响度听力图,它不仅显示听觉阈值,还可视化了整个频率范围内响度增长的全过程。这种方法的益处已经在依赖电(人工耳蜗)和声学(助听器)听力的受试者中得到了评估。

方法

在一组 15 名双模使用者中,使用响度标度程序分别使用人工耳蜗和助听器测量响度增长。为每种模式构建了响度增长曲线,使用一种新的响度函数,然后将其集成在一个图形中,该图形绘制频率、刺激强度水平和响度感知。将佩戴人工耳蜗和助听器的双模益处定义为与仅佩戴人工耳蜗的益处之间的差异,用于评估多种语音结果。

结果

响度增长与噪声中语音识别的双模益处以及语音质量的某些方面有关。在安静环境中,未发现响度与语音之间的相关性。与那些助听器主要提供等效输入的患者相比,助听器输入不均等的患者在噪声中语音识别的双模益处更大。

结论

结果表明,响度增长与噪声中语音识别的双模益处以及语音质量的某些方面有关。与那些助听器主要提供等效输入的患者相比,与人工耳蜗相比助听器输入不同的患者通常会获得更大的双模益处。这表明,为了在所有频率上创建相等的响度而进行双模适配并不总是对语音识别有益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/522e/10118154/0593893eb61e/pone.0277161.g001.jpg

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