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Listening to an Audio Drama Activates Two Processing Networks, One for All Sounds, Another Exclusively for Speech

机译:听音频剧激活了两个处理网络,一个用于所有声音,另一个专门用于语音。

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摘要

Earlier studies have shown considerable intersubject synchronization of brain activity when subjects watch the same movie or listen to the same story. Here we investigated the across-subjects similarity of brain responses to speech and non-speech sounds in a continuous audio drama designed for blind people. Thirteen healthy adults listened for ∼19 min to the audio drama while their brain activity was measured with 3 T functional magnetic resonance imaging (fMRI). An intersubject-correlation (ISC) map, computed across the whole experiment to assess the stimulus-driven extrinsic brain network, indicated statistically significant ISC in temporal, frontal and parietal cortices, cingulate cortex, and amygdala. Group-level independent component (IC) analysis was used to parcel out the brain signals into functionally coupled networks, and the dependence of the ICs on external stimuli was tested by comparing them with the ISC map. This procedure revealed four extrinsic ICs of which two–covering non-overlapping areas of the auditory cortex–were modulated by both speech and non-speech sounds. The two other extrinsic ICs, one left-hemisphere-lateralized and the other right-hemisphere-lateralized, were speech-related and comprised the superior and middle temporal gyri, temporal poles, and the left angular and inferior orbital gyri. In areas of low ISC four ICs that were defined intrinsic fluctuated similarly as the time-courses of either the speech-sound-related or all-sounds-related extrinsic ICs. These ICs included the superior temporal gyrus, the anterior insula, and the frontal, parietal and midline occipital cortices. Taken together, substantial intersubject synchronization of cortical activity was observed in subjects listening to an audio drama, with results suggesting that speech is processed in two separate networks, one dedicated to the processing of speech sounds and the other to both speech and non-speech sounds.
机译:早期的研究表明,当受试者观看同一部电影或收听同一故事时,大脑活动之间存在相当大的主体间同步。在这里,我们研究了为盲人设计的连续音频剧中大脑对语音和非语音的反应在主体间的相似性。 13名健康成年人听了约19分钟的音频剧,并用3 T功能磁共振成像(fMRI)测量了他们的大脑活动。在整个实验中计算的受试者间相关性(ISC)图评估了由刺激驱动的外在性大脑网络,该图表明颞,额叶和顶叶皮层,扣带状皮层和杏仁核在统计学上具有重要意义。使用组级独立组件(IC)分析将大脑信号分解为功能耦合的网络,并通过将它们与ISC图进行比较来测试IC对外部刺激的依赖性。此过程显示了四个外部IC,其中两个覆盖听觉皮层的非重叠区域受到语音和非语音的调制。其他两个外部IC,一个左半球偏侧,另一个右半球侧偏,与语音相关,包括上颞中回,颞极,左角回和眶下回。在低ISC的地区,定义为内在的四个IC的变化与与语音相关的或与所有声音相关的外部IC的时程相似。这些IC包括颞上回,前岛和额叶,顶叶和中线枕叶皮质。两者合计,在听音频戏剧的受试者中观察到皮质活动的主体间同步,结果表明,语音是在两个单独的网络中处理的,一个专门处理语音,另一个处理语音和非语音。

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