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采用新型植入技术的言语理解:与新型非经皮骨锚式助听器系统的对比研究

Speech understanding with a new implant technology: a comparative study with a new nonskin penetrating Baha system.

作者信息

Kurz Anja, Flynn Mark, Caversaccio Marco, Kompis Martin

机构信息

Department of ENT, Head and Neck Surgery, Inselspital, University of Bern, 3010 Bern, Switzerland.

Cochlear Bone Anchored Hearing Solutions, Mölnlycke, Sweden.

出版信息

Biomed Res Int. 2014;2014:416205. doi: 10.1155/2014/416205. Epub 2014 Jul 23.

Abstract

OBJECTIVE

To compare hearing and speech understanding between a new, nonskin penetrating Baha system (Baha Attract) to the current Baha system using a skin-penetrating abutment.

METHODS

Hearing and speech understanding were measured in 16 experienced Baha users. The transmission path via the abutment was compared to a simulated Baha Attract transmission path by attaching the implantable magnet to the abutment and then by adding a sample of artificial skin and the external parts of the Baha Attract system. Four different measurements were performed: bone conduction thresholds directly through the sound processor (BC Direct), aided sound field thresholds, aided speech understanding in quiet, and aided speech understanding in noise.

RESULTS

The simulated Baha Attract transmission path introduced an attenuation starting from approximately 5 dB at 1000 Hz, increasing to 20-25 dB above 6000 Hz. However, aided sound field threshold shows smaller differences and aided speech understanding in quiet and in noise does not differ significantly between the two transmission paths.

CONCLUSION

The Baha Attract system transmission path introduces predominately high frequency attenuation. This attenuation can be partially compensated by adequate fitting of the speech processor. No significant decrease in speech understanding in either quiet or in noise was found.

摘要

目的

比较一种新型非经皮穿透的骨锚式助听器系统(Baha Attract)与当前使用经皮穿透基台的骨锚式助听器系统在听力和言语理解方面的差异。

方法

对16名有经验的骨锚式助听器使用者进行听力和言语理解测试。通过将植入式磁铁连接到基台上,然后添加人工皮肤样本和Baha Attract系统的外部部件,将通过基台的传输路径与模拟的Baha Attract传输路径进行比较。进行了四种不同的测量:直接通过声音处理器的骨传导阈值(BC Direct)、助听听阈、安静环境下的助听言语理解以及噪声环境下的助听言语理解。

结果

模拟的Baha Attract传输路径在1000Hz处引入了约5dB的衰减,在6000Hz以上增加到20 - 25dB。然而,助听听阈显示出较小的差异,并且在安静和噪声环境下,两种传输路径的助听言语理解没有显著差异。

结论

Baha Attract系统传输路径主要引入高频衰减。这种衰减可以通过语音处理器的适当调试得到部分补偿。在安静或噪声环境下,言语理解均未发现显著下降。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb4e/4130194/0807ea40a911/BMRI2014-416205.001.jpg

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