首页> 外文期刊>Otology and neurotology: official publication of the American Otological Society, American Neurotology Society [and] European Academy of Otology and Neurotology >Speech Perception in Quiet and Noise With an Off the Ear CI Processor Enabling Adaptive Microphone Directionality
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Speech Perception in Quiet and Noise With an Off the Ear CI Processor Enabling Adaptive Microphone Directionality

机译:在安静和噪声中的言语感知,耳朵CI处理器启用自适应麦克风方向性

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Objective:To investigate the impact of the wearing position of an off-the-ear-processor (OTE) on speech perception in quiet and noise.Patients:The study group consisted of 16 adult subjects with bilateral severe-to-profound sensorineural hearing loss, 2 of them unilaterally, and 14 bilaterally provided with cochlear implants.Main Outcome Measures:Speech perception in quiet and noise was measured for frontal presentation with the recipients behind-the-ear processor CP810 or CP910 and the OTE processor Kanso (Cochlear Limited, Sydney, Australia). Additionally, speech performance in noise with the OTE for spatially separated signal and noise sources was assessed.Results:The recipients showed monosyllabic word recognition scores in quiet between 65 and 95% and speech reception thresholds in noise between 2.4 and -5.5dB SNR with the OTE. For frontal presentation of speech and noise, application of the adaptive directional microphone (Beam) yielded a slight median decrement of 0.6dB for the speech reception threshold compared with standard directionality. However, huge median improvements, ranging from -3.7 to -11.6dB, for the three tested conditions with spatially separated sources (S0NIL, S0NCL, S0N180) were observed.Conclusion:The beamforming algorithm in the investigated OTE processor provides similar benefits as described in previous studies for behind-the-ear processors in conditions with spatially separated speech and noise sources. Adaptive microphone directionality can be successfully implemented in an OTE processor. The OTE processor's potential to increase usability, comfort, and cosmetics might not be compromised by a deterioration of speech performance.
机译:目的:探讨耳耳处理器(OTE)佩戴位置对安静和噪声的语音感知的影响,其中2个单方面,14个双边提供了耳蜗植入物。据成果措施悉尼,澳大利亚)。另外,评估了具有空间分离信号和噪声源的噪声的噪声的语音性能。结果:收件人在65到95%的噪声与2.4和-5.5db的噪声之间的噪声之间的安静显示单音节字识别分数。 OTE。对于语音和噪声的正面呈现,自适应定向麦克风(光束)的应用产生了与标准方向性相比的语音接收阈值的0.6dB的略微中值下降。然而,从-3.7到-11.6db的巨大中音改进,对于具有空间分离的源(s0nil,s0ncl,s0n180)的三个测试条件。结论:研究的调查结果处理器中的波束形成算法提供了类似的益处以前在空间分离的语音和噪声源的条件下对耳后处理器的研究。可以在产品处理器中成功实现自适应麦克风方向性。言语表现的恶化可能不会受到可用性,舒适性和化妆品的增加的潜力,这可能不会受到损害。

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