Vermeulen Arthur, Verschuur Carl
Hearing and Balance Centre, Institute of Sound and Vibration Research, University of Southampton, Highfield, Southampton SO17 1BJ, United Kingdom.
University of Southampton, Auditory Implant Service, Highfield, Southampton SO17 1BJ, United Kingdom.
J Acoust Soc Am. 2016 Jul;140(1):229. doi: 10.1121/1.4954752.
Speech recognition by cochlear implant users can be improved by adding an audible low frequency acoustic signal to electrical hearing; the resulting improvement is deemed "electro-acoustic stimulation (EAS) benefit." However, a crucial low frequency cue, fundamental frequency (F0), can be distorted via the impaired auditory system. In order to understand how F0 distortions may affect EAS benefit, normal-hearing listeners were presented monaurally with vocoded speech (frequencies >250 Hz) and an acoustical signal (frequencies <250 Hz) with differing manipulations of the F0 signal, specifically: a pure tone with the correct mean F0 but with smaller variations around this mean, or a narrowband of white noise centered around F0, at varying bandwidths; a pure tone down-shifted in frequency by 50 Hz but keeping overall frequency modulations. Speech-recognition thresholds improved when tones with reduced frequency modulation were presented, and improved significantly for noise bands maintaining F0 information. A down-shifted tone, or only a tone to indicate voicing, showed no EAS benefit. These results confirm that the presence of the target's F0 is beneficial for EAS hearing in a noisy environment, and they indicate that the benefit is robust to F0 distortion, as long as the mean F0 and frequency modulations of F0 are preserved.
通过向电刺激听力中添加可听见的低频声学信号,可以提高人工耳蜗使用者的语音识别能力;由此产生的改善被视为“电声刺激(EAS)益处”。然而,一个关键的低频线索,即基频(F0),可能会通过受损的听觉系统而失真。为了了解F0失真如何影响EAS益处,研究人员向听力正常的受试者单耳呈现了经过声码转换的语音(频率>250 Hz)和声学信号(频率<250 Hz),并对F0信号进行了不同的处理,具体如下:一个具有正确平均F0但围绕该平均值的变化较小的纯音,或者一个以F0为中心、带宽可变的窄带白噪声;一个频率下移50 Hz但保持整体频率调制的纯音。当呈现频率调制减少的音调时,语音识别阈值得到改善,对于保持F0信息的噪声带,语音识别阈值显著改善。一个下移的音调,或者仅仅一个表示浊音的音调,没有显示出EAS益处。这些结果证实,目标的F0的存在对嘈杂环境中的EAS听力有益,并且表明只要F0的平均F0和频率调制得以保留,这种益处对F0失真具有鲁棒性。