1 Waisman Center, University of Wisconsin-Madison, WI, USA.
Trends Hear. 2018 Jan-Dec;22:2331216518772963. doi: 10.1177/2331216518772963.
For patients with bilateral cochlear implants (BiCIs), understanding a target talker in a noisy situation can be difficult. Current efforts for improving speech-in-noise understanding have focused on improving signal-to-noise ratio by using multiple microphones or signal processing, with only moderate improvements in speech understanding performance. However, BiCI users typically report having a better ear for listening which can lead to an asymmetry in speech unmasking performance. This work proposes a novel listening strategy for improving speech-in-noise understanding by combining (a) a priori knowledge of a better ear and having a BiCI user selectively attend to a target talker in that ear with (b) signal processing that delivers the target talker to the better ear and the noisy background to the opposite ear. This strategy is different from traditional noise reduction strategies because it maintains situational awareness (background sounds are delivered to the ear contralateral to the better ear) while improving speech understanding. Speech recognition performance was evaluated with and without the better ear strategy in a speech-in-noise listening test using a virtual auditory space created from individualized head-related transfer functions. Listeners showed an average improvement of 4.4 dB signal-to-noise ratio in their speech reception threshold when using the better ear strategy with no listener showing a decrement in performance. This implies that the strategy has the potential to boost speech-in-noise recognition in BiCI users and may be useful in other hearing assistance devices such as hearing aids.
对于双侧人工耳蜗植入患者(BiCIs)来说,在嘈杂环境中理解目标说话者可能很困难。目前,提高语音噪声理解能力的努力集中在通过使用多个麦克风或信号处理来提高信噪比,这只能在一定程度上提高语音理解性能。然而,BiCI 用户通常报告说,他们有更好的听力,这会导致语音掩蔽性能的不对称。这项工作提出了一种新的听力策略,通过(a)利用对更好耳朵的先验知识,使 BiCI 用户选择性地关注该耳朵中的目标说话者,以及(b)信号处理将目标说话者传送到更好的耳朵,将嘈杂的背景传送到对侧耳朵,从而提高语音噪声理解能力。与传统的降噪策略不同,这种策略通过向更好耳朵对侧的耳朵传递背景声音来保持情境意识(即传递背景声音),同时提高语音理解能力。在使用基于个体头部相关传递函数创建的虚拟听觉空间的语音噪声聆听测试中,评估了在和不使用更好耳朵策略时的语音识别性能。当使用更好耳朵策略时,听众的语音接收阈值平均提高了 4.4 dB 信噪比,没有听众的表现下降。这意味着该策略有可能提高 BiCI 用户在语音噪声中的识别能力,并且在其他听力辅助设备(如助听器)中可能有用。