在斑马的听觉前脑中,声学类别的动态编码
1Department of Psychology, Rutgers, The State University of New Jersey, Piscataway, NJ, 08854, USA. wl535@scarletmail.rutgers.edu.
Scientific reports
|July 10, 2023
概括
斑马学会识别人类的语音类别,在NCM区域形成通用的神经表征. 这种听觉学习会随着暴露而改善,并且适用于新扬声器,建议共享声学处理机制.
科学领域:
- 神经科学是一个神经科学.
- 生物声学是一种生物声学.
- 动物沟通动物沟通
背景情况:
- 语音沟通依赖于创建声学类别,用于不变的声音表示,尽管存在变化.
- 人类和动物可以区分语音,这对于理解口语至关重要.
- 形成通用声学类别的神经基础在很大程度上仍未被探索.
研究的目的:
- 为了研究底层的神经机制,形成语音声音的声学类别.
- 检查大脑如何独立于说话者特定变异来表示语音.
- 为了确定被动暴露是否细化了声学类别的神经表示.
主要方法:
- 电生理学记录在斑马的二级听觉区域,Caudomedial Nidopallium (NCM) 中进行.
- 使用被动接触人类语言刺激 (来自多个演讲者的两个不同的单词).
- 分析了神经距离和解码精度,以评估类别歧视.
主要成果:
- 单词类别之间的神经区分随着被动暴露的持续时间而改善.
- 改进的神经表征将推广到新型说话者说的单词上.
- NCM神经元展示了动态编码,随着时间的推移改进了分类表示.
结论:
- 斑马的NCM神经元形成了词语类别的概括表示,不变于扬声器变异.
- 消极的听觉暴露增强和完善这些分类表示.
- 这表明共享的神经机制处理复杂的声音信号跨物种,包括人类.
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