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Developmental Conductive Hearing Loss Reduces Modulation Masking Release

机译:发育性传导性听力损失减少调制掩膜释放

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Hearing-impaired individuals experience difficulties in detecting or understanding speech, especially in background sounds within the same frequency range. However, normally hearing (NH) human listeners experience less difficulty detecting a target tone in background noise when the envelope of that noise is temporally gated (modulated) than when that envelope is flat across time (unmodulated). This perceptual benefit is called modulation masking release (MMR). When flanking masker energy is added well outside the frequency band of the target, and comodulated with the original modulated masker, detection thresholds improve further (MMR+). In contrast, if the flanking masker is antimodulated with the original masker, thresholds worsen (MMR?). These interactions across disparate frequency ranges are thought to require central nervous system (CNS) processing. Therefore, we explored the effect of developmental conductive hearing loss (CHL) in gerbils on MMR characteristics, as a test for putative CNS mechanisms. The detection thresholds of NH gerbils were lower in modulated noise, when compared with unmodulated noise. The addition of a comodulated flanker further improved performance, whereas an antimodulated flanker worsened performance. However, for CHL-reared gerbils, all three forms of masking release were reduced when compared with NH animals. These results suggest that developmental CHL impairs both within- and across-frequency processing and provide behavioral evidence that CNS mechanisms are affected by a peripheral hearing impairment.
机译:听力受损的人在检测或理解语音时会遇到困难,尤其是在相同频率范围内的背景声音中。但是,正常听觉(NH)的听众在时间上进行门控(调制)时,检测背景噪声中目标音的难度要比在时间上是平坦的(未调制)时困难。这种感知上的好处称为调制屏蔽释放(MMR)。当侧翼掩蔽器能量恰好在目标频段之外添加并与原始调制掩蔽器共调制时,检测阈值会进一步提高(MMR +)。相反,如果侧翼掩蔽器被原始掩蔽器抗调制,则阈值恶化(MMR?)。这些跨越不同频率范围的相互作用被认为需要中枢神经系统(CNS)处理。因此,我们探索了沙鼠中发育性传导性听力损失(CHL)对MMR特征的影响,以此作为对中枢神经系统机制的检验。与未调制噪声相比,NH沙鼠的检测阈值在调制噪声中较低。共调制侧卫的添加进一步改善了性能,而反调制侧卫则降低了性能。但是,对于CHL饲养的沙鼠,与NH动物相比,所有三种形式的掩蔽释放都减少了。这些结果表明,发育性CHL损害了频率内和频率间的处理,并提供了行为学证据,表明中枢神经系统机制受周围听力障碍的影响。

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