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Improved binaural speech reception thresholds through small symmetrical separation of speech and noise

机译:通过小对称分离的语音和噪声来改进双耳语音接收阈值

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Speech perception in noise is challenging and is improved by binaural hearing. Since signal processing of assistive hearing devices often modifies or masks the peripheral binaural head-shadow or better-ear effects, central binaural processing should be measured separately. In a prospective study, 10 listeners with normal hearing were tested with the German matrix sentence test in a set-up with two loudspeakers located at opposite angles in the horizontal plane with respect to S 0 N 0 . The speech reception threshold (SRT) was investigated depending on the separation angle between speech and noise. The lowest (best) SRT was obtained for a separation of target and interfering source from S 0 N 0 at an angle of about S ±60° N ?60° . The derived normative curve was comparable to SRTs predicted by the binaural-speech-intelligibility-model. The systematic separation of signal and noise showed a significant improvement in speech intelligibility for normal-hearing people even for small separation angles. This experimental setting was verified. This study aimed to assess the effect of small sound source separation on binaural hearing and speech perception.
机译:噪音的语音感知是具有挑战性的,并通过双耳听力改善。由于辅助听力装置的信号处理经常修改或掩盖外围双耳椎间影像或更好的耳朵效应,因此应单独测量中央双耳加工。在一个预期的研究中,用德国矩阵句子测试在设置的设置中进行了10个听觉器,其中两个扬声器相对于S 0 n 0位于水平平面中的相反角度。根据语音和噪声之间的分离角来研究语音接收阈值(SRT)。获得最低(最佳的)SRT,用于将目标和干扰源分离,从S 0 N 0以约S±60°N = 60°的角度分离。衍生的规范曲线与双耳语 - 语音可懂度模型预测的SRT相当。即使对于小分离角度,信号和噪声的系统分离显示出常常听力人物的语音清晰度显着改善。验证了该实验设置。本研究旨在评估小声源分离对双耳听力和语音感知的影响。

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