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Speech recognition for bilaterally asymmetric and symmetric hearing aid microphone modes in simulated classroom environments

机译:模拟教室环境中双侧非对称和对称助听器麦克风模式的语音识别

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Objectives: This study aimed to evaluate the potential utility of asymmetrical and symmetrical directional hearing aid fittings for school-age children in simulated classroom environments. This study also aimed to evaluate speech recognition performance of children with normal hearing in the same listening environments. Design: Two groups of school-age children 11 to 17 years of age participated in this study. Twenty participants had normal hearing, and 29 participants had sensorineural hearing loss. Participants with hearing loss were fitted with behind-the-ear hearing aids with clinically appropriate venting and were tested in 3 hearing aid configurations: bilateral omnidirectional, bilateral directional, and asymmetrical directional microphones. Speech recognition testing was completed in each microphone configuration in 3 environments: Talker-Front, Talker-Back, and Question-Answer situations. During testing, the location of the speech signal changed, but participants were always seated in a noisy, moderately reverberant classroom-like room. Results: For all conditions, results revealed expected effects of directional microphones on speech recognition performance. When the signal of interest was in front of the listener, bilateral directional microphone was best, and when the signal of interest was behind the listener, bilateral omnidirectional microphone was best. Performance with asymmetric directional microphones was between the 2 symmetrical conditions. The magnitudes of directional benefits and decrements were not significantly correlated. In comparison with their peers with normal hearing, children with hearing loss performed similarly to their peers with normal hearing when fitted with directional microphones and the speech was from the front. In contrast, children with normal hearing still outperformed children with hearing loss if the speech originated from behind, even when the children were fitted with the optimal hearing aid microphone mode for the situation. Conclusions: Bilateral directional microphones can be effective in improving speech recognition performance for children in the classroom, as long as child is facing the talker of interest. Bilateral directional microphones, however, can impair performance if the signal originates from behind a listener. However, these data suggest that the magnitude of decrement is not predictable from an individual's benefit. The results re-emphasize the importance of appropriate switching between microphone modes so children can take full advantage of directional benefits without being hurt by directional decrements. An asymmetric fitting limits decrements, but does not lead to maximum speech recognition scores when compared with the optimal symmetrical fitting. Therefore, the asymmetric mode may not be the best option as a default fitting for children in a classroom environment. While directional microphones improve performance for children with hearing loss, their performance in most conditions continues to be impaired relative to their normal-hearing peers, particularly when the signals of interest originate from behind or from an unpredictable location.
机译:目的:本研究旨在评估非对称和对称定向助听器配件在模拟教室环境中对学龄儿童的潜在实用性。这项研究还旨在评估在相同聆听环境下听力正常的儿童的语音识别性能。设计:两组11至17岁的学龄儿童参加了这项研究。 20名参与者的听力正常,而29名参与者的感觉神经性听力减退。听力损失的参与者配备了具有临床通气功能的耳后助听器,并在三种助听器配置中进行了测试:双侧全向,双侧定向和非对称定向麦克风。语音识别测试已在3个环境中的每种麦克风配置中完成:“讲话者前”,“讲话者后”和“问题解答”情况。在测试过程中,语音信号的位置发生了变化,但参与者始终坐在嘈杂,中等混响的教室式房间中。结果:在所有条件下,结果均显示定向麦克风对语音识别性能的预期影响。当感兴趣的信号在听众面前时,最好是双向定向麦克风;当感兴趣的信号在听众面前时,最好是双向全向麦克风。非对称定向麦克风的性能介于两个对称条件之间。定向效益和减量的幅度没有显着相关。与听力正常的同龄人相比,听力下降的儿童在安装定向麦克风时的表现与听力正常的同龄人相似,并且讲话来自前方。相比之下,即使语音是从背后发出的,即使他们为这种情况配备了最佳的助听器麦克风模式,听力正常的孩子仍然比听力下降的孩子好。结论:只要孩子面对感兴趣的说话者,双向指向性麦克风就可以有效地提高教室中孩子的语音识别性能。但是,如果信号是从听众后面发出的,则双向定向麦克风会降低性能。但是,这些数据表明,减少的幅度无法根据个人的利益进行预测。结果再次强调了在麦克风模式之间进行适当切换的重要性,因此儿童可以充分利用定向优势,而不会受到定向衰减的伤害。与最佳对称拟合相比,非对称拟合可限制递减,但不会导致最大的语音识别分数。因此,非对称模式可能不是最佳选择,因为它适合教室环境中的孩子使用。定向麦克风虽然可以改善有听力障碍的儿童的性能,但相对于正常听力的同伴,在大多数情况下其性能仍会受到损害,尤其是当感兴趣的信号来自后面或无法预测的位置时。

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