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Brainstem Circuits for Rhythm Generation and Coordination of Orofacial Movements

  • Massachusetts Institute of Technology

Research output: Contribution to journalReview articlepeer-review

Abstract

The head serves as a multifunctional nexus through which animals engage with the external world—gathering sensory input, breathing, feeding, and producing communication signals. These diverse functions must be executed with constrained anatomical resources, often requiring the same oropharyngeal structures to participate in multiple behaviors. Such overlap demands precise coordination to prevent catastrophic errors such as choking or aspiration, while ensuring that breathing and eating proceed without conflict. Operating largely outside conscious awareness, brainstem circuits choreograph these actions by controlling multiple muscle groups with remarkable precision and adaptability. Interactions between different rhythm-generating circuits can weave distinct actions—like whisking with sniffing or licking and chewing—into integrated behaviors that serve survival needs. Recent advances in circuit dissection, targeted manipulations, and large-scale electrophysiological recordings are uncovering neurons and functional connections that support precise, coordinated, yet flexible, orofacial actions. These studies provide new insights into how brainstem circuitry achieves precise and effective control over one of biology's most demanding motor challenges.

Original languageEnglish
Pages (from-to)255-272
Number of pages18
JournalAnnual Review of Neuroscience
Volume49
Issue number1
DOIs
StatePublished - 2026

Keywords

  • brainstem
  • motor coordination
  • neural circuit
  • orofacial movements
  • rhythm generation

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