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灵长类听觉皮层在发声时的单位活动和γ振荡的分离。

Dissociation of Unit Activity and Gamma Oscillations during Vocalization in Primate Auditory Cortex.

机构信息

Auditory and Communication Systems Laboratory, Department of Otorhinolaryngology, Head and Neck Surgery, University of Pennsylvania Perelman School of Medicine, Philadelphia, Pennsylvania, 19104.

Department of Veterinary Medicine, Faculty of Agriculture, Iwate University, Morioka, Iwate Japan, 020-8550.

出版信息

J Neurosci. 2020 May 20;40(21):4158-4171. doi: 10.1523/JNEUROSCI.2749-19.2020. Epub 2020 Apr 15.

Abstract

Vocal production is a sensory-motor process in which auditory self-monitoring is used to ensure accurate communication. During vocal production, the auditory cortex of both humans and animals is suppressed, a phenomenon that plays an important role in self-monitoring and vocal motor control. However, the underlying neural mechanisms of this vocalization-induced suppression are unknown. γ-band oscillations (>25 Hz) have been implicated a variety of cortical functions and are thought to arise from activity of local inhibitory interneurons, but have not been studied during vocal production. We therefore examined γ-band activity in the auditory cortex of vocalizing marmoset monkeys, of either sex, and found that γ responses increased during vocal production. This increase in γ contrasts with simultaneously recorded suppression of single-unit and multiunit responses. Recorded vocal γ oscillations exhibited two separable components: a vocalization-specific nonsynchronized ("induced") response correlating with vocal suppression, and a synchronized ("evoked") response that was also present during passive sound playback. These results provide evidence for the role of cortical γ oscillations during inhibitory processing. Furthermore, the two distinct components of the γ response suggest possible mechanisms for vocalization-induced suppression, and may correspond to the sensory-motor integration of top-down and bottom-up inputs to the auditory cortex during vocal production. Vocal communication is important to both humans and animals. In order to ensure accurate information transmission, we must monitor our own vocal output. Surprisingly, spiking activity in the auditory cortex is suppressed during vocal production yet maintains sensitivity to the sound of our own voice ("feedback"). The mechanisms of this vocalization-induced suppression are unknown. Here we show that auditory cortical γ oscillations, which reflect interneuron activity, are actually increased during vocal production, the opposite response of that seen in spiking units. We discuss these results with proposed functions of γ activity during inhibitory sensory processing and coordination of different brain regions, suggesting a role in sensory-motor integration.

摘要

发声是一种感觉运动过程,其中听觉自我监控用于确保准确的交流。在发声过程中,人类和动物的听觉皮层被抑制,这种现象在自我监控和发声运动控制中起着重要作用。然而,这种发声诱导抑制的潜在神经机制尚不清楚。γ 波段振荡(>25 Hz)与多种皮层功能有关,被认为源自局部抑制性中间神经元的活动,但在发声过程中尚未研究过。因此,我们检查了发声的狨猴听觉皮层中的 γ 波段活动,无论性别如何,发现 γ 反应在发声过程中增加。与同时记录的单个单位和多个单位反应的抑制相比,这种γ 反应的增加形成了对比。记录的发声γ 振荡表现出两个可分离的成分:与发声抑制相关的发声特异性非同步(“诱导”)反应,以及在被动声音播放期间也存在的同步(“诱发”)反应。这些结果为皮层 γ 振荡在抑制处理中的作用提供了证据。此外,γ 反应的两个不同成分表明了发声诱导抑制的可能机制,并且可能对应于发声过程中自上而下和自下而上输入到听觉皮层的感觉运动整合。发声交流对人类和动物都很重要。为了确保准确的信息传输,我们必须监控自己的发声输出。令人惊讶的是,在发声过程中听觉皮层的尖峰活动被抑制,但仍对我们自己的声音(“反馈”)保持敏感性。这种发声诱导抑制的机制尚不清楚。在这里,我们表明听觉皮层 γ 振荡,反映了中间神经元的活动,实际上在发声过程中增加,这与尖峰单元中观察到的反应相反。我们结合γ 活动在抑制性感觉处理和不同脑区协调中的提出的功能讨论了这些结果,表明其在感觉运动整合中的作用。

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本文引用的文献

1
Corollary Discharge Mechanisms During Vocal Production in Marmoset Monkeys.狨猴发声过程中的副放电机制。
Biol Psychiatry Cogn Neurosci Neuroimaging. 2019 Sep;4(9):805-812. doi: 10.1016/j.bpsc.2019.06.008. Epub 2019 Jun 29.
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Speaking-Induced Suppression of the Auditory Cortex in Humans and Its Relevance to Schizophrenia.言语诱发的人类听觉皮层抑制及其与精神分裂症的关系。
Biol Psychiatry Cogn Neurosci Neuroimaging. 2019 Sep;4(9):791-804. doi: 10.1016/j.bpsc.2019.05.011. Epub 2019 May 30.
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Dual Neural Network Model for the Evolution of Speech and Language.双神经网络模型在言语和语言演变中的应用。
Trends Neurosci. 2016 Dec;39(12):813-829. doi: 10.1016/j.tins.2016.10.006. Epub 2016 Nov 22.

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