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小鼠发声和音量控制的脑干回路。

A brainstem circuit for phonation and volume control in mice.

机构信息

Department of Biochemistry and Howard Hughes Medical Institute, Stanford University School of Medicine, Stanford, CA, USA.

Department of Bioengineering, Stanford University, Stanford, CA, USA.

出版信息

Nat Neurosci. 2023 Dec;26(12):2122-2130. doi: 10.1038/s41593-023-01478-2. Epub 2023 Nov 23.

Abstract

Mammalian vocalizations are critical for communication and are produced through the process of phonation, in which expiratory muscles force air through the tensed vocal folds of the larynx, which vibrate to produce sound. Despite the importance of phonation, the motor circuits in the brain that control it remain poorly understood. In this study, we identified a subpopulation of ~160 neuropeptide precursor Nts (neurotensin)-expressing neurons in the mouse brainstem nucleus retroambiguus (RAm) that are robustly activated during both neonatal isolation cries and adult social vocalizations. The activity of these neurons is necessary and sufficient for vocalization and bidirectionally controls sound volume. RAm Nts neurons project to all brainstem and spinal cord motor centers involved in phonation and activate laryngeal and expiratory muscles essential for phonation and volume control. Thus, RAm Nts neurons form the core of a brain circuit for making sound and controlling its volume, which are two foundations of vocal communication.

摘要

哺乳动物的发声对于交流至关重要,其产生过程是通过发声来实现的,在这个过程中,呼气肌迫使空气通过拉紧的喉声带,从而产生声音。尽管发声很重要,但大脑中控制它的运动回路仍知之甚少。在这项研究中,我们在小鼠脑干核 retroambiguus (RAm) 中鉴定出了一个约 160 个表达神经降压素前体 Nts (neurotensin) 的神经元亚群,这些神经元在新生儿隔离哭声和成年社交发声期间都被强烈激活。这些神经元的活动对于发声是必要且充分的,并且可以双向控制音量。RAm Nts 神经元投射到所有参与发声的脑干和脊髓运动中枢,并激活喉和呼气肌,这些肌肉对于发声和音量控制至关重要。因此,RAm Nts 神经元形成了用于发声和控制其音量的大脑回路的核心,这是声音和音量控制的两个基础,也是发声交流的两个基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf96/10689238/9ee75b648d30/41593_2023_1478_Fig1_HTML.jpg

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