首页> 美国卫生研究院文献>other >The Binaural Masking-Level Difference of Mandarin Tone Detection and the Binaural Intelligibility-Level Difference of Mandarin Tone Recognition in the Presence of Speech-Spectrum Noise
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The Binaural Masking-Level Difference of Mandarin Tone Detection and the Binaural Intelligibility-Level Difference of Mandarin Tone Recognition in the Presence of Speech-Spectrum Noise

机译:语音频谱噪声下普通话检测的双耳掩蔽水平差异和普通话识别的双耳可懂度水平差异

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摘要

Binaural hearing involves using information relating to the differences between the signals that arrive at the two ears, and it can make it easier to detect and recognize signals in a noisy environment. This phenomenon of binaural hearing is quantified in laboratory studies as the binaural masking-level difference (BMLD). Mandarin is one of the most commonly used languages, but there are no publication values of BMLD or BILD based on Mandarin tones. Therefore, this study investigated the BMLD and BILD of Mandarin tones. The BMLDs of Mandarin tone detection were measured based on the detection threshold differences for the four tones of the voiced vowels /i/ (i.e., /i1/, /i2/, /i3/, and /i4/) and /u/ (i.e., /u1/, /u2/, /u3/, and /u4/) in the presence of speech-spectrum noise when presented interaurally in phase (S0N0) and interaurally in antiphase (SπN0). The BILDs of Mandarin tone recognition in speech-spectrum noise were determined as the differences in the target-to-masker ratio (TMR) required for 50% correct tone recognitions between the S0N0 and SπN0 conditions. The detection thresholds for the four tones of /i/ and /u/ differed significantly (p<0.001) between the S0N0 and SπN0 conditions. The average detection thresholds of Mandarin tones were all lower in the SπN0 condition than in the S0N0 condition, and the BMLDs ranged from 7.3 to 11.5 dB. The TMR for 50% correct Mandarin tone recognitions differed significantly (p<0.001) between the S0N0 and SπN0 conditions, at –13.4 and –18.0 dB, respectively, with a mean BILD of 4.6 dB. The study showed that the thresholds of Mandarin tone detection and recognition in the presence of speech-spectrum noise are improved when phase inversion is applied to the target speech. The average BILDs of Mandarin tones are smaller than the average BMLDs of Mandarin tones.
机译:双耳听力涉及使用与到达两只耳朵的信号之间的差异有关的信息,它可以使在嘈杂的环境中更容易检测和识别信号。在实验室研究中,这种双耳听力现象被量化为双耳掩蔽水平差异(BMLD)。普通话是最常用的语言之一,但是没有基于普通话音调的BMLD或BILD的出版价值。因此,本研究调查了普通话的BMLD和BILD。基于浊音元音/ i /(即/ i1 /,/ i2 /,/ i3 /和/ i4 /)和/ u /(当在耳间以相位(S0N0)和耳间以反相(SπN0)出现时,在存在语音频谱噪声的情况下,即/ u1 /,/ u2 /,/ u3 /和/ u4 /)。语音频谱噪声中普通话音调识别的BILD被确定为S0N0和SπN0条件之间50%正确音调识别所需的目标掩盖比(TMR)的差异。 / i /和/ u /的四个音调的检测阈值在S0N0和SπN0条件之间显着不同(p <0.001)。在SπN0条件下,普通话音调的平均检测阈值均低于在S0N0条件下,并且BMLD的范围为7.3至11.5 dB。 S 0 N 0 和S π N 的50%正确普通话音识别的TMR差异显着(p <0.001) 0 条件,分别为–13.4和–18.0 dB,平均BILD为4.6 dB。研究表明,将相位反转应用于目标语音时,在存在语音频谱噪声的情况下,普通话音调检测和识别的阈值将得到改善。普通话的平均BILD小于普通话的BMLD。

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