...
首页> 外文期刊>Human brain mapping >Hearing and seeing meaning in noise: Alpha, beta, and gamma oscillations predict gestural enhancement of degraded speech comprehension
【24h】

Hearing and seeing meaning in noise: Alpha, beta, and gamma oscillations predict gestural enhancement of degraded speech comprehension

机译:听力和看到噪声中的意义:Alpha,Beta和Gamma振荡预测了降解语音理解的姿态增强

获取原文
获取原文并翻译 | 示例

摘要

During face-to-face communication, listeners integrate speech with gestures. The semantic information conveyed by iconic gestures (e.g., a drinking gesture) can aid speech comprehension in adverse listening conditions. In this magnetoencephalography (MEG) study, we investigated the spatiotemporal neural oscillatory activity associated with gestural enhancement of degraded speech comprehension. Participants watched videos of an actress uttering clear or degraded speech, accompanied by a gesture or not and completed a cued-recall task after watching every video. When gestures semantically disambiguated degraded speech comprehension, an alpha and beta power suppression and a gamma power increase revealed engagement and active processing in the hand-area of the motor cortex, the extended language network (LIFG/pSTS/STG/MTG), medial temporal lobe, and occipital regions. These observed low- and high-frequency oscillatory modulations in these areas support general unification, integration and lexical access processes during online language comprehension, and simulation of and increased visual attention to manual gestures over time. All individual oscillatory power modulations associated with gestural enhancement of degraded speech comprehension predicted a listener's correct disambiguation of the degraded verb after watching the videos. Our results thus go beyond the previously proposed role of oscillatory dynamics in unimodal degraded speech comprehension and provide first evidence for the role of low- and high-frequency oscillations in predicting the integration of auditory and visual information at a semantic level.
机译:在面对面的通信期间,听众将语音与手势集成。由标志性手势传达的语义信息(例如,饮用手势)可以帮助语音理解在不利的听力条件下。在这种磁力摄影(MEG)的研究中,我们研究了与降解语音理解的姿态增强相关的时空神经振荡活动。参与者观看了演员发出清晰或降级的演讲的视频,伴随着手势,并在观看每次视频后完成了一个呼叫召回任务。当手势语义消化不衰的语音理解时,α和β功率抑制和伽马动力增加在电机皮层的手面积,扩展语言网络(LIFG / PST / STG / MTG),内侧时间叶和枕骨区域。这些区域中观察到的低频和高频振荡调制支持在线语言理解过程中的一般统一,集成和词汇访问过程,以及随着时间的推移模拟和增加对手动手势的视觉注意。与降级语音理解的识别功能相关的所有单个振动电力调制预测了观看视频后倾听的动词的正确歧义。因此,我们的结果超出了先前提出的振荡动力学在单峰变化的语音理解中的作用,并为高频振荡的作用提供了第一证据,以便在语义水平上预测听觉和视觉信息的整合。

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