...
首页> 外文期刊>Journal of Cognitive Neuroscience >Cortical Tracking of Global and Local Variations of Speech Rhythm during Connected Natural Speech Perception
【24h】

Cortical Tracking of Global and Local Variations of Speech Rhythm during Connected Natural Speech Perception

机译:连接自然语音感知过程中语音节律的全局和局部变化的皮层跟踪。

获取原文
获取原文并翻译 | 示例
           

摘要

During natural speech perception, listeners must track the global speaking rate, that is, the overall rate of incoming linguistic information, as well as transient, local speaking rate variations occurring within the global speaking rate. Here, we address the hypothesis that this tracking mechanism is achieved through coupling of cortical signals to the amplitude envelope of the perceived acoustic speech signals. Cortical signals were recorded with magnetoencephalography (MEG) while participants perceived spontaneously produced speech stimuli at three global speaking rates (slow, normal/habitual, and fast). Inherently to spontaneously produced speech, these stimuli also featured local variations in speaking rate. The coupling between cortical and acoustic speech signals was evaluated using audio-MEG coherence. Modulations in audio-MEG coherence spatially differentiated between tracking of global speaking rate, highlighting the temporal cortex bilaterally and the right parietal cortex, and sensitivity to local speaking rate variations, emphasizing the left parietal cortex. Cortical tuning to the temporal structure of natural connected speech thus seems to require the joint contribution of both auditory and parietal regions. These findings suggest that cortical tuning to speech rhythm operates on two functionally distinct levels: one encoding the global rhythmic structure of speech and the other associated with online, rapidly evolving temporal predictions. Thus, it may be proposed that speech perception is shaped by evolutionary tuning, a preference for certain speaking rates, and predictive tuning, associated with cortical tracking of the constantly changing-rate of linguistic information in a speech stream.
机译:在自然语音感知过程中,听众必须跟踪全局语速,即传入语言信息的总体速率,以及在全局语速范围内发生的瞬时局部语速变化。在这里,我们提出一个假设,即通过将皮质信号耦合到感知到的语音信号的幅度包络来实现这种跟踪机制。皮质信号通过脑磁图(MEG)记录,而参与者感知到自发地以三种全球语速(慢,正常/习惯和快速)产生语音刺激。这些刺激固有地是自发产生的,其特征还在于语速的局部变化。使用音频-MEG相干性评估了皮层和声音语音信号之间的耦合。音频-MEG相干性的调制在空间上有所区别,其中包括跟踪全局说话率,突出显示双侧颞叶皮质和右顶叶皮层,以及对局部语速变化的敏感性(强调左顶叶皮层)。因此,对自然连接的语音的时间结构进行皮质调整似乎需要听觉和顶叶区域的共同贡献。这些发现表明,对语音节奏的皮层调音在两个功能上不同的水平上进行操作:一个编码语音的整体节奏结构,另一个与在线快速发展的时间预测相关。因此,可以提出,通过与语音流中语言信息的不断变化的速率的皮层跟踪相关联的进化调整,对某些语速的偏爱和预测调整来成形语音感知。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号