首页> 外文期刊>Journal of Cognitive Neuroscience >Read My Lips: Brain Dynamics Associated with Audiovisual Integration and Deviance Detection
【24h】

Read My Lips: Brain Dynamics Associated with Audiovisual Integration and Deviance Detection

机译:阅读我的嘴唇:与视听整合和偏差检测相关的大脑动力学

获取原文
获取原文并翻译 | 示例
           

摘要

Information from different modalities is initially processed in different brain areas, yet real-world perception often requires the integration of multisensory signals into a single percept. An example is the McGurk effect, in which people viewing a speaker whose lip movements do not match the utterance perceive the spoken sounds incorrectly, hearing them as more similar to those signaled by the visual rather than the auditory input. This indicates that audiovisual integration is important for generating the phoneme percept. Here we asked when and where the audiovisual integration process occurs, providing spatial and temporal boundaries for the processes generating phoneme perception. Specifically, we wanted to separate audiovisual integration from other processes, such as simple deviance detection. Building on previous work employing ERPs, we used an oddball paradigm in which task-irrelevant audiovisually deviant stimuli were embedded in strings of non-deviant stimuli. We also recorded the event-related optical signal, an imaging method combining spatial and temporal resolution, to investigate the time course and neuroanatomical substrate of audiovisual integration. We found that audiovisual deviants elicit a short duration response in the middle/superior temporal gyrus, whereas audiovisual integration elicits a more extended response involving also inferior frontal and occipital regions. Interactions between audiovisual integration and deviance detection processes were observed in the posterior/superior temporal gyrus. These data suggest that dynamic interactions between inferior frontal cortex and sensory regions play a significant role in multimodal integration.
机译:来自不同形式的信息最初是在不同的大脑区域中处理的,但是现实世界中的感知通常需要将多感官信号集成到单个感知器中。 McGurk效应就是一个例子,在这种情况下,观看嘴唇动作与发声不匹配的扬声器的人会错误地感知到说话的声音,听到的声音与视觉而非听觉输入的声音更相似。这表明视听集成对于生成音素感知很重要。在这里,我们询问了视听整合过程的时间和地点,为生成音素感知的过程提供了空间和时间上的界限。具体来说,我们希望将视听集成与其他过程(例如简单的偏差检测)分开。在以前使用ERP的工作的基础上,我们使用了一个奇异球范式,其中与任务无关的视听异常刺激嵌入了非异常刺激的字符串中。我们还记录了事件相关的光信号,这是一种将时空分辨率结合起来的成像方法,旨在研究视听整合的时程和神经解剖学基础。我们发现视听异常在中/上颞回引起短时反应,而视听整合引起下额额叶和枕叶区域的反应更广泛。在后/上颞回中观察到视听整合与偏差检测过程之间的相互作用。这些数据表明,下额叶皮层和感觉区域之间的动态相互作用在多峰整合中起重要作用。

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