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远程麦克风技术在小儿骨导式助听设备使用者中的信号透传性能。

.Signal Transparency of Remote Microphone Technology in Pediatric Bone Conduction Device Users.

机构信息

Department of Otolaryngology, University of Miami Ear Institute, Miami, Florida, USA.

出版信息

Audiol Neurootol. 2023;28(5):360-370. doi: 10.1159/000529992. Epub 2023 Jun 2.

Abstract

INTRODUCTION

Competing noise in the environment negatively affects speech intelligibility, particularly when listening at a distance. This is especially true for children with hearing loss in classroom environments where the signal-to-noise ratio is often poor. Remote microphone technology has been shown to be highly beneficial at improving the signal-to-noise ratio in hearing device users. Children with bone conduction devices, however, often must rely on indirect transmission of the acoustic signal for commonly used classroom-based remote microphone listening (e.g., digital adaptive microphone) which may negatively affect speech intelligibility. There are no studies on the effectiveness of using a relay method of signal delivery using remote microphone technology to improve speech intelligibility in adverse listening environments in bone conduction device users.

METHODS

Nine children with irresolvable conductive hearing loss and 12 adult controls with normal hearing were included for study. Controls were bilaterally plugged to simulate conductive hearing loss. All testing was conducted using the Cochlear™ Baha® 5 standard processor coupled with either the Cochlear™ Mini Microphone 2+ digital remote microphone or the Phonak Roger™ adaptive digital remote microphone. Speech intelligibility in noise was evaluated in the (1) bone conduction device processor alone, (2) bone conduction device + personal remote microphone, and (3) bone conduction device + personal remote microphone + adaptive digital remote microphone listening conditions at -10 dB, 0 dB, and +5 dB signal-to-noise ratios.

RESULTS AND CONCLUSIONS

Speech intelligibility in noise improved significantly in the bone conduction device + personal remote microphone condition over the bone conduction device alone, demonstrating significant benefit for listening at poor signal-to-noise ratios in children with conductive hearing loss using bone conduction devices with personal remote microphone use. Experimental findings demonstrate poor signal transparency when using the relay method. Coupling of the adaptive digital remote microphone technology to the personal remote microphone negatively affects signal transparency, and no hearing in noise improvements are observed. Significant gains in speech intelligibility are consistently observed for direct streaming methods and are confirmed in adult controls. Behavioral findings are supported by objective verification of the signal transparency between the remote microphone and the bone conduction device.

摘要

简介

环境中的竞争噪声会对语音可懂度产生负面影响,尤其是在远距离聆听时。对于在教室环境中听力受损的儿童来说,情况更是如此,因为那里的信噪比通常很差。事实证明,远程麦克风技术在提高听力设备使用者的信噪比方面非常有效。然而,骨导设备的儿童通常必须依靠声学信号的间接传输来进行常见的基于教室的远程麦克风聆听(例如,数字自适应麦克风),这可能会对语音可懂度产生负面影响。目前尚无研究使用远程麦克风技术的信号传递中继方法来提高骨导设备使用者在不利聆听环境中的语音可懂度。

方法

本研究纳入了 9 名无法解决的传导性听力损失儿童和 12 名听力正常的成人对照组。对照组双侧塞堵模拟传导性听力损失。所有测试均使用 Cochlear™ Baha® 5 标准处理器进行,同时使用 Cochlear™ Mini Microphone 2+数字远程麦克风或 Phonak Roger™自适应数字远程麦克风。在(1)骨传导设备处理器单独使用,(2)骨传导设备+个人远程麦克风,和(3)骨传导设备+个人远程麦克风+自适应数字远程麦克风的情况下,在-10dB、0dB 和+5dB 的信噪比下评估语音在噪声中的可懂度。

结果与结论

与骨传导设备单独使用相比,骨传导设备+个人远程麦克风的情况下,语音在噪声中的可懂度显著提高,这表明在使用骨导设备的儿童中,个人远程麦克风在信噪比较差的情况下有显著的助听效果。实验结果表明,使用中继方法时信号透明度较差。自适应数字远程麦克风技术与个人远程麦克风的耦合会降低信号透明度,并且听不到噪声改善。在成人对照组中,也观察到直接流媒体方法始终具有更高的语音可懂度增益,并且得到了客观验证。行为研究结果得到了远程麦克风和骨导设备之间信号透明度的客观验证的支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/08fa/10614244/252efcebd3c5/aud-2023-0028-0005-529992_F01.jpg

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