Yackle Kevin, Do Jeehaeh
Department of Physiology, University of California-San Francisco, San Francisco, CA 94143, USA; Kavli Institute for Fundamental Neuroscience, University of California, San Francisco, CA, USA; Cardiovascular Research Institute, University of California, San Francisco, CA, USA.
Department of Physiology, University of California-San Francisco, San Francisco, CA 94143, USA.
Curr Opin Neurobiol. 2025 Feb;90:102974. doi: 10.1016/j.conb.2025.102974. Epub 2025 Jan 28.
Subconscious breathing is generated by a network of brainstem nodes with varying purposes, like pacing breathing or patterning a certain breath phase. Decades of anatomy, pharmacology, and physiology studies have identified and characterized the system's fundamental properties that produce robust breathing, and we now have well-conceived computational models of breathing that are based on the detailed descriptions of neuronal connectivity, biophysical properties, and functions in breathing. In total, we have a considerable understanding of the brainstem breathing control circuit. But, in the last five years, the utilization of molecular and genetic approaches to study the neural subtypes within each node has led to a new era of breathing control circuit research that explains how breathing is integrated with more complex behaviors like speaking and running and how breathing is connected with other physiological systems and our state-of-mind. This review will describe the basic role of the key components of the brainstem breathing control circuit and then will highlight the new transformative discoveries that broaden our understanding of these breathing control brain areas. These new studies serve to illustrate the creativity and exciting future of breathing control research.
潜意识呼吸由具有不同功能的脑干神经节点网络产生,比如调节呼吸节奏或塑造特定的呼吸阶段。数十年来的解剖学、药理学和生理学研究已经确定并描述了该系统产生稳定呼吸的基本特性,现在我们拥有基于对呼吸过程中神经元连接、生物物理特性和功能的详细描述而精心构建的呼吸计算模型。总体而言,我们对脑干呼吸控制回路有了相当深入的了解。但是,在过去五年中,利用分子和遗传学方法研究每个神经节点内的神经亚型,开启了呼吸控制回路研究的新时代,这解释了呼吸如何与说话和跑步等更复杂的行为整合在一起,以及呼吸如何与其他生理系统和我们的心理状态相联系。这篇综述将描述脑干呼吸控制回路关键组成部分的基本作用,然后重点介绍拓宽我们对这些呼吸控制脑区理解的新的变革性发现。这些新研究有助于说明呼吸控制研究的创新性和令人兴奋的未来。