Kovács Petra, Tóth Brigitta, Honbolygó Ferenc, Szalárdy Orsolya, Kohári Anna, Mády Katalin, Magyari Lilla, Winkler István
Department of Cognitive Science, Budapest University of Technology and Economics, Hungary.
Institute of Cognitive Neuroscience and Psychology, Research Center for Natural Sciences, Hungary.
Brain Res. 2023 Apr 15;1805:148246. doi: 10.1016/j.brainres.2023.148246. Epub 2023 Jan 16.
To process speech in a multi-talker environment, listeners need to segregate the mixture of incoming speech streams and focus their attention on one of them. Potentially, speech prosody could aid the segregation of different speakers, the selection of the desired speech stream, and detecting targets within the attended stream. For testing these issues, we recorded behavioral responses and extracted event-related potentials and functional brain networks from electroencephalographic signals recorded while participants listened to two concurrent speech streams, performing a lexical detection and a recognition memory task in parallel. Prosody manipulation was applied to the attended speech stream in one group of participants and to the ignored speech stream in another group. Naturally recorded speech stimuli were either intact, synthetically F0-flattened, or prosodically suppressed by the speaker. Results show that prosody - especially the parsing cues mediated by speech rate - facilitates stream selection, while playing a smaller role in auditory stream segmentation and target detection.
为了在多说话者环境中处理语音,听众需要分离传入语音流的混合,并将注意力集中在其中一个语音流上。语音韵律可能有助于区分不同的说话者、选择所需的语音流以及在被关注的语音流中检测目标。为了测试这些问题,我们记录了行为反应,并从参与者同时听两个语音流时记录的脑电图信号中提取了事件相关电位和功能性脑网络,同时并行执行词汇检测和识别记忆任务。韵律操纵应用于一组参与者的被关注语音流,而应用于另一组参与者的被忽略语音流。自然录制的语音刺激要么完整,要么经过合成F0平坦化,要么由说话者进行韵律抑制。结果表明,韵律——尤其是由语速介导的解析线索——有助于语音流的选择,而在听觉语音流分割和目标检测中发挥的作用较小。