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音高加工的发展:婴儿对具有未解析频谱内容的迭代波纹噪声刺激的辨别。

Development of pitch processing: infants' discrimination of iterated rippled noise stimuli with unresolved spectral content.

机构信息

Department of Psychology, Neuroscience & Behaviour, McMaster University, 1280 Main Street West, Hamilton, ON L8S 4L8, Canada.

出版信息

Hear Res. 2013 Oct;304:1-6. doi: 10.1016/j.heares.2013.05.009. Epub 2013 Jun 10.

Abstract

Sound frequency is extracted at the level of the cochlea, and is represented by two neural codes: a spectral (place) code that is maintained by tonotopic maps extending into primary auditory cortex, and a temporal code based on the periodicity of action potentials in auditory nerve fibers. To date, little work has examined infants' ability to perceive pitch when spectral content cannot be resolved by cochlear filters; the present experiments do so using high-pass filtered iterated rippled noise (IRN) stimuli. Using a conditioned head-turn paradigm, most 8-month-old infants showed above-chance discrimination of a change from 167 to 200 Hz in the fundamental frequency (F0) of such high-passed filtered IRN stimuli, but only when first exposed to a training target stimulus that emphasized pitch through the addition of a sine wave tone to the IRN stimulus at the F0. However, even after this period of pitch priming, performance was quite poor relative to that found in previous studies using stimuli with resolved spectral content. These results support the idea that 8-month-olds can perceive pitch when only unresolved spectral content is present in the stimulus, but that such processing is not yet robust.

摘要

声音频率在耳蜗水平被提取,并由两种神经编码表示:一种是基于延伸到初级听觉皮层的音位图谱的频谱(位置)编码,另一种是基于听神经纤维动作电位周期性的时间编码。迄今为止,很少有研究关注当耳蜗滤波器无法解析频谱内容时婴儿感知音高的能力;本实验使用高通滤波迭代波纹噪声(IRN)刺激来实现这一点。使用条件转头范式,大多数 8 个月大的婴儿在基本频率(F0)为 167-200 Hz 的高通滤波 IRN 刺激中表现出高于机会的辨别能力,但只有在首次接触到强调音高的训练目标刺激时才会出现这种情况,即在 IRN 刺激中添加正弦波音调。然而,即使在这种音高启动期之后,与使用具有解析频谱内容的刺激的先前研究相比,表现仍然相当差。这些结果支持这样一种观点,即当刺激中仅存在未解析的频谱内容时,8 个月大的婴儿可以感知音高,但这种处理还不够稳健。

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