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Sound Localization in Real-Time Vocoded Cochlear-Implant Simulations With Normal-Hearing Listeners

机译:带有正常听觉听众的实时声码人工耳蜗植入模拟中的声音定位

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摘要

Bilateral cochlear-implant (CI) users and single-sided deaf listeners with a CI are less effective at localizing sounds than normal-hearing (NH) listeners. This performance gap is due to the degradation of binaural and monaural sound localization cues, caused by a combination of device-related and patient-related issues. In this study, we targeted the device-related issues by measuring sound localization performance of 11 NH listeners, listening to free-field stimuli processed by a real-time CI vocoder. The use of a real-time vocoder is a new approach, which enables testing in a free-field environment. For the NH listening condition, all listeners accurately and precisely localized sounds according to a linear stimulus–response relationship with an optimal gain and a minimal bias both in the azimuth and in the elevation directions. In contrast, when listening with bilateral real-time vocoders, listeners tended to orient either to the left or to the right in azimuth and were unable to determine sound source elevation. When listening with an NH ear and a unilateral vocoder, localization was impoverished on the vocoder side but improved toward the NH side. Localization performance was also reflected by systematic variations in reaction times across listening conditions. We conclude that perturbation of interaural temporal cues, reduction of interaural level cues, and removal of spectral pinna cues by the vocoder impairs sound localization. Listeners seem to ignore cues that were made unreliable by the vocoder, leading to acute reweighting of available localization cues. We discuss how current CI processors prevent CI users from localizing sounds in everyday environments.
机译:双边人工耳蜗(CI)使用者和单侧聋人听力障碍者(CI)在声音定位方面的效率不如正常听力(NH)者。这种性能差距是由于双耳和单耳声音定位提示的降低,而这是由与设备有关的问题和与患者有关的问题共同引起的。在这项研究中,我们通过测量11个NH收听者的声音本地化性能,收听实时CI声码器处理的自由场刺激,来针对设备相关的问题。实时声码器的使用是一种新方法,可以在自由场环境中进行测试。对于NH收听条件,所有收听者均根据线性刺激-响应关系在方位角和仰角方向上均具有最佳增益和最小偏差,从而准确,精确地定位声音。相反,当使用双边实时声码器收听时,收听者倾向于将方位角定向在左侧或右侧,并且无法确定声源的仰角。当用NH耳朵和单边声码器收听时,本地化在声码器侧较差,但朝NH侧改善。本地化性能还通过听音条件下反应时间的系统变化来反映。我们得出的结论是,听觉临时提示的扰动,听觉水平提示的减少以及声码器消除频谱峰值提示会损害声音的定位。听众似乎忽略了声码器使之变得不可靠的线索,从而导致可用定位线索的权重急剧增加。我们将讨论当前的CI处理器如何防止CI用户在日常环境中本地化声音。

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