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Individual Differences in Human Auditory Processing: Insights From Single-Trial Auditory Midbrain Activity in an Animal Model

机译:人类听觉处理的个体差异:动物模型中单试听觉中脑活动的见解

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摘要

Auditory-evoked potentials are classically defined as the summations of synchronous firing along the auditory neuraxis. Converging evidence supports a model whereby timing jitter in neural coding compromises listening and causes variable scalp-recorded potentials. Yet the intrinsic noise of human scalp recordings precludes a full understanding of the biological origins of individual differences in listening skills. To delineate the mechanisms contributing to these phenomena, in vivo extracellular activity was recorded from inferior colliculus in guinea pigs to speech in quiet and noise. Here we show that trial-by-trial timing jitter is a mechanism contributing to auditory response variability. Identical variability patterns were observed in scalp recordings in human children, implicating jittered timing as a factor underlying reduced coding of dynamic speech features and speech in noise. Moreover, intertrial variability in human listeners is tied to language development. Together, these findings suggest that variable timing in inferior colliculus blurs the neural coding of speech in noise, and propose a consequence of this timing jitter for human behavior.These results hint both at the mechanisms underlying speech processing in general, and at what may go awry in individuals with listening difficulties.
机译:诱发潜在的潜力被典型定义为沿着听觉神经内同步射击的总结。融合证据支持神经编码中的时序抖动的模型,妥协侦听并导致可变的头皮记录的电位。然而,人类头皮录音的内在噪声排除了对听力技能的个体差异的生物起源来完全了解。描绘有助于这些现象的机制,在体内细胞外活性以豚鼠的劣质小植物记录在安静和噪音中的言论。在这里,我们表明,试用试验时序抖动是一种有助于听觉响应变异性的机制。在人类儿童的头皮记录中观察到相同的变化模式,将抖动时序视为潜在的动态语音特征和噪声语音编码的因素。此外,人类听众中的闭合变异性与语言开发相关联。这些研究结果表明,下小丘陵的变量模拟了噪声中的语音的神经编码,并提出了这个时序抖动的对人类行为的结果。这些结果暗示了一般语音处理的机制,以及可能发生的在倾听困难的个人身上。

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