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首页> 外文期刊>Journal of speech, language, and hearing research: JSLHR >Representation of sound categories in auditory cortical maps.
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Representation of sound categories in auditory cortical maps.

机译:声音类别在听觉皮层图中的表示。

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摘要

Functional magnetic resonance imaging (fMRI) was used to investigate the representation of sound categories in human auditory cortex. Experiment 1 investigated the representation of prototypical (good) and nonprototypical (bad) examples of a vowel sound. Listening to prototypical examples of a vowel resulted in less auditory cortical activation than did listening to nonprototypical examples. Experiments 2 and 3 investigated the effects of categorization training and discrimination training with novel nonspeech sounds on auditory cortical representations. The 2 training tasks were shown to have opposite effects on the auditory cortical representation of sounds experienced during training: Discrimination training led to an increase in the amount of activation caused by the training stimuli, whereas categorization training led to decreased activation. These results indicate that the brain efficiently shifts neural resources away from regions of acoustic space where discrimination between sounds is not behaviorally important (e.g., near the center of a sound category) and toward regions where accurate discrimination is needed. The results also provide a straightforward neural account of learned aspects of perceptual distortion near sound categories: Sounds from the center of a category are more difficult to discriminate from each other than sounds near category boundaries because they are represented by fewer cells in the auditory cortical areas.
机译:功能磁共振成像(fMRI)用于研究人类听觉皮层中声音类别的表示。实验1研究了元音的典型(好)和非典型(坏)示例的表示。听元音的典型例子比听非典型的例子引起的听觉皮层激活少。实验2和3研究了使用新型非语音声音进行分类训练和歧视训练对听觉皮层表征的影响。研究表明,这2个训练任务对训练过程中所听到的声音的听觉皮层表示有相反的影响:歧视训练导致训练刺激引起的激活量增加,而分类训练导致激活减少。这些结果表明,大脑有效地将神经资源从声音空间的区分在行为上不重要的声空间区域(例如,在声音类别的中心附近)转移到需要精确区分的区域。结果还提供了对声音类别附近知觉失真的学习方面的直接神经解释:来自类别中心的声音比类别边界附近的声音更难以彼此区分,因为它们由听觉皮层区域中较少的细胞表示。

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