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骨导式助听设备中高频增益和最大输出对语音识别的影响:一项盲法研究。

High-Frequency Gain and Maximum Output Effects on Speech Recognition in Bone-Conduction Hearing Devices: Blinded Study.

机构信息

Hospital for Rehabilitation of Craniofacial Anomalies (HRAC), Bauru.

Politec Saúde, Barueri, SP, Brazil.

出版信息

Otol Neurotol. 2023 Dec 1;44(10):1045-1051. doi: 10.1097/MAO.0000000000004043. Epub 2023 Nov 2.

Abstract

INTRODUCTION

Bone-conduction hearing device (BCHD) uses natural sound transmission through bone and soft tissue, directly to the cochlea, via an external processor that captures and processes sound, which is converted into mechanical vibrations. Key parameters, as maximum power output (MPO) and broader frequency range (FR), must be considered when indicating a BCHD because they can be decisive for speech recognition, especially under listening challenge conditions.

OBJECTIVES

Compare hearing performance and speech recognition in noise of two sound processors (SPs), with different features of MPO and FR, among BCHD users.

MATERIALS AND METHODS

This single-blinded, comparative, observational study evaluated 21 individuals Baha 4 system users with conductive or mixed hearing impairment. The free-field audiometry and speech recognition results were blindly collected under the following conditions: unaided, with Baha 5, and with Baha 6 Max SP.

RESULTS

In free-field audiometry, significant differences were observed between the SP at 0.25, 3, 4, 6, and 8 kHz, with Baha 6 Max outperforming Baha 5. The Baha 6 Max provided significantly better speech recognition than Baha 5 under all the speech in noise conditions evaluated. Separating the transcutaneous from the percutaneous users, Baha 6 Max Attract SP provided the best results and significantly lowered the free-field thresholds than Baha 5 Attract. The Baha 6 Max also significantly improved speech recognition in noise, among both Attract and Connect users.

CONCLUSION

The present study revealed that the greater MPO and broader FR of the Baha 6 Max device helped increase high-frequency gain and improved speech recognition in BCHD-experimented users.

摘要

简介

骨导式听力设备(BCHD)使用通过外部处理器捕捉和处理声音,将声音直接转换为机械振动,通过骨骼和软组织自然传输到耳蜗的方法。由于最大输出功率(MPO)和更宽的频率范围(FR)等关键参数可能对语音识别,尤其是在听力挑战条件下的识别具有决定性作用,因此在指示 BCHD 时必须考虑这些参数。

目的

比较两种具有不同 MPO 和 FR 特征的声音处理器(SP)在 BCHD 用户中的听力表现和噪声下的语音识别能力。

材料和方法

本单盲、对照、观察性研究评估了 21 名患有传导性或混合性听力障碍的 Baha 4 系统使用者。在以下条件下,以盲法收集自由场听阈和语音识别结果:未佩戴、佩戴 Baha 5 和佩戴 Baha 6 Max SP。

结果

在自由场听阈测试中,SP 在 0.25、3、4、6 和 8 kHz 处存在显著差异,Baha 6 Max 优于 Baha 5。在所有评估的噪声下语音识别条件中,Baha 6 Max 均比 Baha 5 提供了更好的语音识别。将经皮与经皮使用者分开,Baha 6 Max Attract SP 提供了最佳的结果,比 Baha 5 Attract 显著降低了自由场阈值。Baha 6 Max 还显著改善了 Attract 和 Connect 用户的噪声下语音识别。

结论

本研究表明,Baha 6 Max 设备具有更大的 MPO 和更宽的 FR,有助于增加高频增益并改善 BCHD 使用者的语音识别。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/20c8/10662602/75b3ceb7c768/on-44-1045-g001.jpg

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