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Contribution of binaural masking release to improved speech intelligibility for different masker types

机译:双耳掩蔽释放的贡献改进了不同掩蔽类型的语音清晰度

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In situations with competing talkers or in the presence of masking noise, speech intelligibility can be improved by spatially separating the target speaker from the interferers. This advantage is generally referred to as spatial release from masking, and different mechanisms have been suggested to explain it. One proposed mechanism to benefit from spatial cues is the binaural masking release, which is purely stimulus-driven. According to this mechanism, the spatial benefit results from differences in the binaural cues of target and masker, which need to appear simultaneously in time and frequency to improve the signal detection. In an alternative proposed mechanism, the differences in the interaural cues improve the segregation of auditory streams, a process, which involves top-down processing rather than being purely stimulus-driven. Other than the cues that produce binaural masking release, the interaural cue differences between target and interferer required to improve stream segregation do not have to appear simultaneously in time and frequency. This study is concerned with the contribution of binaural masking release to spatial release from masking for three masker types that differ with respect to the amount of energetic masking they exert. Speech intelligibility was measured, employing a stimulus manipulation that inhibits binaural masking release and analysed with a metric to account for the number of better-ear glimpses. Results indicate that the contribution of the stimulus-driven binaural masking release plays a minor role while binaural stream segregation and the availability of glimpses in the better ear had a stronger influence on improving the speech intelligibility.
机译:在有相互竞争的说话者或存在掩蔽噪声的情况下,可以通过在空间上将目标说话者与干扰者分离来提高语音清晰度。这种优势通常被称为掩蔽的空间释放,人们提出了不同的机制来解释它。一种从空间线索中获益的机制是双耳掩蔽释放,它纯粹是刺激驱动的。根据这一机制,空间效益来自于目标和掩蔽者双耳线索的差异,需要在时间和频率上同时出现,以提高信号检测。在另一种提出的机制中,双耳线索的差异改善了听觉流的分离,这一过程涉及自上而下的处理,而不是纯粹的刺激驱动。除了产生双耳掩蔽释放的线索外,改善流分离所需的目标和干扰源之间的双耳线索差异不必在时间和频率上同时出现。这项研究关注的是双耳掩蔽释放对三种掩蔽类型的掩蔽空间释放的贡献,这三种掩蔽类型在能量掩蔽的数量上有所不同。通过抑制双耳掩蔽释放的刺激操作来测量语音可懂度,并用一个指标来分析更好的耳扫次数。结果表明,刺激驱动的双耳掩蔽释放对提高语音清晰度的作用较小,而双耳流分离和较好耳朵中的瞥见对提高语音清晰度的影响更大。

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