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Effects of Noise-Induced Hearing Loss at Young Age on Voice Onset Time and Gap-in-Noise Representations in Adult Cat Primary Auditory Cortex

机译:幼年噪声诱发的听力损失对成年猫初级听觉皮层语音发作时间和噪声间隙表示的影响

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摘要

Here we show that mild hearing loss induced by noise exposure in early age causes a decrease in neural temporal resolution when measured in adulthood. We investigated the effect of this chronic hearing loss on the representation of a voice onset time (VOT) and a gap-duration continuum in primary auditory cortex (AI) in cats, which were exposed at the age of 6 weeks to a 120-dB SPL, 5-kHz 1/3 octave noise band for 2 h. The resulting hearing loss measured using auditory brainstem responses and cortical multiunit thresholds at 4–6 months of age was 20–40 dB between 1 and 32 kHz. Multiple single-unit activity was recorded in seven noise-exposed cats and nine control cats related to the presentation of a/ba/–/pa/ continuum in which VOT was varied in 5-ms step from 0 to 70 ms. We also obtained data for noise bursts with gaps, of duration equal to the VOT, embedded in noise 5 ms after the onset. Both stimuli were presented at 65 dB SPL. Minimum VOT and early-gap duration were defined as the lowest value in which an on-response, significantly above the spontaneous activity, to both the leading and trailing noise bursts or vowel was obtained. The mild chronic noise-induced hearing loss increased the minimum detectable VOT and gap duration by 10 ms. We also analyzed the maximum firing rate (FRmax) and the latency of the responses as a function of VOT and gap duration and found a significant reduction in the FRmax to the trailing noise burst for gap durations above 50 ms. This suggests that mild hearing loss acquired in early age may affect cortical temporal processing in adulthood.
机译:在这里,我们显示了在成年后测量,由噪音暴露引起的轻度听力损失会导致神经时间分辨率的下降。我们调查了这种慢性听力丧失对猫的初次听觉皮层(AI)的声音发作时间(VOT)和间隔持续时间的表示的影响,这些猫在6周龄时暴露于120 dB SPL,5-kHz 1/3倍频程噪声带,持续2小时。使用听觉脑干反应和皮质多单位阈值在4至6个月大时测得的听力损失在1至32 kHz之间为20至40 dB。在与a / ba / – / pa /连续体的表现有关的七只暴露于噪音的猫和九只对照猫中,记录了多个单位活动,其中VOT在5毫秒内从0到70毫秒变化。我们还获得了间隔为VOT且持续时间等于VOT的噪声突发的数据,该数据嵌入到发病后5毫秒的噪声中。两种刺激均以65 dB SPL出现。最小VOT和早期间隙持续时间定义为最低值,在该最小值中,获得了对前,后噪声突发或元音的明显高于自发活动的响应。轻度的慢性噪音诱发的听力损失使最小可检测VOT和间隙持续时间增加了10毫秒。我们还分析了最大触发速率(FRmax)和响应的等待时间与VOT和间隙持续时间的关系,发现对于间隙持续时间超过50 ms的FRmax到尾随噪声突发的显着降低。这表明早年获得的轻度听力损失可能会影响成年期的皮质颞叶加工。

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