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The effect of the audallion BEAMformer noise reduction preprocessor on sound localization for cochlear implant users.

机译:耳蜗BEAMformer降噪预处理器对人工耳蜗用户的声音定位效果。

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OBJECTIVE: To assess the effect of the Audallion BEAMformer noise reduction preprocessor on the sound localization ability of children fitted unilaterally with the Nucleus 22-channel cochlear implant. DESIGN: Eight children aged 11 to 14 yr participated. Using three arrays of six loudspeakers, each child was tested in a semi-reverberant sound proof booth representative of a small office environment. The six loudspeakers were positioned 30 degrees apart in the horizontal plane at a distance of 1 m, spanning 150 degrees either directly in front of or to the left or right of the subject. The stimulus to be localized was a 300 msec broadband noise with a rise/decay of 50 msec. Subjects were tested with the BEAMformer in four possible settings, including one single microphone control condition, with each of the three loudspeaker arrays. One block of 60 forced-choice speaker identification trials was presented for each of the 12 listening conditions. On each trial, the stimulus was emitted by one of the six loudspeakers, randomly selected. RESULTS: Results demonstrated that subjects were unable to discriminate among sound sources arrayed horizontally in space using the cochlear implant microphone alone, or in combination, with the BEAMformer microphone located on the other ear. Results also showed that using the BEAMformer did not bias the perception of spatial location. CONCLUSIONS: The localization of acoustic stimuli in pediatric cochlear implant users was unaffected by the use of the Audallion BEAMformer. The apparent origin of most sounds appears to be pulled toward the implanted ear. Further studies are needed to validate findings.
机译:目的:评估Audallion BEAMformer降噪预处理器对单侧装有Nucleus 22通道人工耳蜗的儿童的声音定位能力的影响。设计:8名11至14岁的儿童参加。使用三个阵列的六个扬声器,每个孩子都在一个代表小型办公环境的半混响隔音棚中接受了测试。六个扬声器在水平面中相距30度,彼此之间的距离为1 m,在对象的左前或右前或左后分别跨过150度。本地化的刺激因素是300毫秒的宽带噪声,上升/衰减为50毫秒。使用BEAMformer在四个可能的设置中对受试者进行了测试,包括一个单独的麦克风控制条件以及三个扬声器阵列中的每一个。针对12种聆听条件中的每一种,进行了60次强制选择说话人识别试验的一项。在每个试验中,刺激是由随机选择的六个扬声器之一发出的。结果:结果表明,单独使用耳蜗植入式麦克风或与另一只耳朵上的BEAMformer麦克风组合使用时,受试者无法分辨在空间中水平排列的声源。结果还表明,使用BEAMformer不会偏向于空间位置的感知。结论:使用Audallion BEAMformer不会影响小儿人工耳蜗植入用户的声刺激定位。大多数声音的明显来源似乎都被拉向植入的耳朵。需要进一步的研究来验证发现。

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