Brainstem control of vocalization and its coordination with respiration.

Park, Jaehong; Choi, Seonmi; Takatoh, Jun; Zhao, Shengli; Harrahill, Andrew; Han, Bao-Xia; Wang, Fan · Science · 2024

basic_science · Level V

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Abstract

Phonation critically depends on precise controls of laryngeal muscles in coordination with ongoing respiration. However, the neural mechanisms governing these processes remain unclear. We identified excitatory vocalization-specific laryngeal premotor neurons located in the retroambiguus nucleus (RAm<sup>VOC</sup>) in adult mice as being both necessary and sufficient for driving vocal cord closure and eliciting mouse ultrasonic vocalizations (USVs). The duration of RAm<sup>VOC</sup> activation can determine the lengths of both USV syllables and concurrent expiration periods, with the impact of RAm<sup>VOC</sup> activation depending on respiration phases. RAm<sup>VOC</sup> neurons receive inhibition from the preBötzinger complex, and inspiration needs override RAm<sup>VOC</sup>-mediated vocal cord closure. Ablating inhibitory synapses in RAm<sup>VOC</sup> neurons compromised this inspiration gating of laryngeal adduction, resulting in discoordination of vocalization with respiration. Our study reveals the circuits for vocal production and vocal-respiratory coordination.

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