特定物种的呼叫在子的极中引起了不对称的活动
Amy Poremba1, Megan Malloy, Richard C Saunders
1Behavioral and Cognitive Neuroscience, Department of Psychology, University of Iowa, Iowa City, Iowa 52242, USA. amy-poremba@uiowa.edu
Nature
|January 30, 2004
概括
子的发声主要由左半球的听觉系统处理,类似于人类的语言. 这种在大脑的不对称性,观察到在上旋,突出了专门的神经处理为物种特定的呼叫.
科学领域:
- 神经科学是一个神经科学.
- 比较心理学比较心理学
- 灵长类的沟通方式
背景情况:
- 子的声音呼叫对于生存和社会互动至关重要.
- 有证据表明,子和人类一样,表现出左半球在发声处理方面的优势.
- 了解这种功能不对称是理解听觉处理演变的关键.
研究的目的:
- 为了研究神经活动模式的底层左半球专业化为子的发声处理.
- 为了确定特定物种呼叫的听觉处理是否在子中显示半球不对称.
主要方法:
- 使用 [14C]2-脱氧葡萄糖 (2-DG) 自主放射学测量了子的局部大脑代谢活动.
- 子被动地倾听特定物种的发声和其他声音类.
- 半球之间以及在不同的声条件下比较代谢活动.
主要成果:
- 与其他声音相比,在响应叫声时,在左上旋,特别是极中发现了显著更大的代谢活动.
- 这种左侧活动缺少前脑辅导器切除的动物,这表明半球间相互作用至关重要.
- 半球不对称性是特定于处理特定物种的发音的.
结论:
- 对子发声的感知引发了并发的半球间相互作用.
- 声音的听觉处理集中在子左半球的一个专门区域内.
- 这一发现支持了灵长类声音通信中人类语音处理的进化前体的假设.
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