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探讨具有方向性麦克风的可编程功率骨导式听力系统(Baha)对混合性听力损失患者听力表现的益处。

Hearing performance benefits of a programmable power baha® sound processor with a directional microphone for patients with a mixed hearing loss.

机构信息

Department of Research and Applications, Cochlear Bone Anchored Solutions, Gothenburg, Sweden.

出版信息

Clin Exp Otorhinolaryngol. 2012 Apr;5 Suppl 1(Suppl 1):S76-81. doi: 10.3342/ceo.2012.5.S1.S76. Epub 2012 Apr 30.

Abstract

OBJECTIVES

New signal processing technologies have recently become available for Baha® sound processors. These technologies have led to an increase in power and to the implementation of directional microphones. For any new technology, it is important to evaluate the degree of benefit under different listening situations.

METHODS

Twenty wearers of the Baha osseointegrated hearing system participated in the investigation. The control sound processor was the Baha Intenso and the test sound processor was the Cochlear™ Baha® BP110power. Performance was evaluated in terms of free-field audibility with narrow band noise stimuli. Speech recognition of monosyllabic phonetically balanced (PB) words in quiet was performed at three intensity settings (50, 65, and 80 dB sound pressure level [SPL]) with materials presented at 0 degrees azimuth. Speech recognition of sentences in noise using the Hearing in Noise Test (HINT) in an adaptive framework was performed with speech from 0 degrees and noise held constant at 65 dB SPL from 180 degrees. Testing was performed in both the omni and directional microphone settings. Loudness growth was assessed in randomly presented 10 dB steps between 30 and 90 dB SPL to narrow band noise stimuli at 500 Hz and 3,000 Hz.

RESULTS

The test sound processor had significantly improved high frequency audibility (3,000-8,000 Hz). Speech recognition of PB words in quiet at three different intensity levels (50, 65, and 80 dB SPL) indicated a significant difference in terms of level (P<0.0001) but not for sound processor type (P>0.05). Speech recognition of sentences in noise demonstrated a 2.5 dB signal-to-noise ratio (SNR) improvement in performance for the test sound processor. The directional microphone provided an additional 2.3 dB SNR improvement in speech recognition (P<0.0001). Loudness growth functions demonstrated similar performance, indicating that both sound processors had sufficient headroom and amplification for the required hearing loss.

CONCLUSION

The test sound processor demonstrated significant improvements in the most challenging listening situation (speech recognition in noise). The implementation of a directional microphone demonstrated a further potential improvement in hearing performance. Both the control and test sound processors demonstrated good performance in terms of audibility, word recognition in quiet and loudness growth.

摘要

目的

新的信号处理技术最近已可用于 Baha® 声音处理器。这些技术带来了功率的提高和定向麦克风的实现。对于任何新技术,重要的是要在不同的听力环境下评估其受益程度。

方法

20 名 Baha 骨整合听力系统佩戴者参与了这项研究。对照声音处理器为 Baha Intenso,测试声音处理器为 Cochlear™ Baha® BP110power。使用窄带噪声刺激评估自由场可听度。在三个强度设置(50、65 和 80 dB 声压级 [SPL])下,使用 0 度方位的材料,对安静环境下的单音节语音平衡(PB)单词的语音识别进行评估。使用自适应框架中的噪声中的语音识别测试(HINT)在 0 度和噪声保持在 65 dB SPL 的情况下从 180 度进行句子的语音识别。在全向和定向麦克风设置下进行测试。在 500 Hz 和 3000 Hz 的窄带噪声刺激下,在 30 至 90 dB SPL 之间以随机呈现的 10 dB 步长评估响度增长。

结果

测试声音处理器显著提高了高频可听度(3000-8000 Hz)。在三个不同的强度水平(50、65 和 80 dB SPL)下对 PB 单词的安静语音识别表明,在水平方面存在显著差异(P<0.0001),但在声音处理器类型方面没有差异(P>0.05)。噪声中的句子识别表明,测试声音处理器的性能提高了 2.5 dB 的信噪比(SNR)。定向麦克风在语音识别方面提供了额外的 2.3 dB SNR 提高(P<0.0001)。响度增长函数表现出相似的性能,表明两个声音处理器都有足够的余量和放大能力来满足所需的听力损失。

结论

测试声音处理器在最具挑战性的听力环境(噪声中的语音识别)中表现出显著的改进。定向麦克风的实现进一步提高了听力表现的潜力。对照声音处理器和测试声音处理器在可听度、安静环境下的单词识别和响度增长方面都表现出良好的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/60bb/3369989/b84ec46f9951/ceo-5-S76-g001.jpg

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