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Left Superior Temporal Gyrus Is Coupled to Attended Speech in a Cocktail-Party Auditory Scene

机译:左上颞颞回与鸡尾酒会听觉场景中的出席演讲相结合

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摘要

Using a continuous listening task, we evaluated the coupling between the listener's cortical activity and the temporal envelopes of different sounds in a multitalker auditory scene using magnetoencephalography and corticovocal coherence analysis. Neuromagnetic signals were recorded from 20 right-handed healthy adult humans who listened to five different recorded stories (attended speech streams), one without any multitalker background (No noise) and four mixed with a “cocktail party” multitalker background noise at four signal-to-noise ratios (5, 0, −5, and −10 dB) to produce speech-in-noise mixtures, here referred to as Global scene. Coherence analysis revealed that the modulations of the attended speech stream, presented without multitalker background, were coupled at ∼0.5 Hz to the activity of both superior temporal gyri, whereas the modulations at 4–8 Hz were coupled to the activity of the right supratemporal auditory cortex. In cocktail party conditions, with the multitalker background noise, the coupling was at both frequencies stronger for the attended speech stream than for the unattended Multitalker background. The coupling strengths decreased as the Multitalker background increased. During the cocktail party conditions, the ∼0.5 Hz coupling became left-hemisphere dominant, compared with bilateral coupling without the multitalker background, whereas the 4–8 Hz coupling remained right-hemisphere lateralized in both conditions. The brain activity was not coupled to the multitalker background or to its individual talkers. The results highlight the key role of listener's left superior temporal gyri in extracting the slow ∼0.5 Hz modulations, likely reflecting the attended speech stream within a multitalker auditory scene.>SIGNIFICANCE STATEMENT When people listen to one person in a “cocktail party,” their auditory cortex mainly follows the attended speech stream rather than the entire auditory scene. However, how the brain extracts the attended speech stream from the whole auditory scene and how increasing background noise corrupts this process is still debated. In this magnetoencephalography study, subjects had to attend a speech stream with or without multitalker background noise. Results argue for frequency-dependent cortical tracking mechanisms for the attended speech stream. The left superior temporal gyrus tracked the ∼0.5 Hz modulations of the attended speech stream only when the speech was embedded in multitalker background, whereas the right supratemporal auditory cortex tracked 4–8 Hz modulations during both noiseless and cocktail-party conditions.
机译:通过使用连续的听力任务,我们使用磁脑图和皮质声带相干分析评估了在多讲话者听觉场景中听者的皮质活动与不同声音的时间包络之间的耦合。记录了20位右撇子健康成年人的神经磁信号,他们听了5个不同的录音故事(有人听的语音流),其中一个没有任何多说话者的背景(无噪音),有四个人在四个信号下混有“鸡尾酒会”多说话者的背景噪音,噪声比(5、0,-5和-10 dB),以产生语音噪声混合,此处称为全局场景。相干分析表明,在没有多说话者背景的情况下,出席语音流的调制在大约0.5 Hz处与两个颞颞回的活动有关,而在4-8 Hz的调制与右上肢听觉的活动有关。皮层。在鸡尾酒会的情况下,由于使用了多方通话者背景噪声,因此与会的语音流的耦合在两个频率上都比无人值守的多方通话者背景更强。耦合强度随着Multitalker背景的增加而降低。在没有鸡尾酒会的情况下,与没有多说话者背景的双边耦合相比,在鸡尾酒会条件下,〜0.5 Hz的耦合成为左半球占主导地位,而在两种情况下,4–8 Hz的耦合仍然保持右半球偏侧。大脑活动与多说话者的背景或其单个说话者无关。研究结果突显了听者左上颞回回在提取缓慢的〜0.5 Hz调制中的关键作用,这很可能反映了多说话者听觉场景中的有人参与的语音流。>重要声明 “鸡尾酒会”的听觉皮层主要跟随出席的语音流,而不是整个听觉场景。然而,人们仍在争论大脑如何从整个听觉场景中提取出席的语音流,以及增加的背景噪声如何破坏该过程。在这项脑磁图研究中,受试者必须参加有或没有多说话者背景噪声的语音流。结果证明了针对参与语音流的频率相关的皮层追踪机制。仅当语音嵌入多说话者背景时,左上颞颞回才跟踪到的语音流的〜0.5 Hz调制,而右上rate听皮层在无噪声和鸡尾酒会条件下都跟踪4–8 Hz调制。

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